Material: cards and templates, sort and move all general group attributes
This commit is contained in:
@@ -7,11 +7,11 @@
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Name = ABS
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Description = This is a blend AcrylnitrilButadienStyrol (ABS) material card. The values are at the low end of the spectrum. If you need a more precise material definition use the more specialised ABS-blend cards.
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Father = Thermoplast
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SourceURL = http://www.matweb.com/search/DataSheet.aspx?MatGUID=eb7a78f5948d481c9493a67f0d089646
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YoungsModulus = 2300 MPa
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UltimateTensileStrength = 38.8 MPa
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PoissonRatio = 0.37
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Density = 1060 kg/m^3
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SourceURL = http://www.matweb.com/search/DataSheet.aspx?MatGUID=eb7a78f5948d481c9493a67f0d089646
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SpecificHeat = 2050 J/kg/K
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ThermalConductivity = 0.158 W/m/K
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ThermalExpansionCoefficient = 0.000093 m/m/K
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@@ -8,13 +8,13 @@ Name = Acrylic Glass
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Description = Poly(methyl methacrylate) (PMMA, acrylic, acrylic glass, trade names Plexiglas, Acrylite, Lucite, Perspex) a transparent thermoplastic often used in sheet form as a lightweight or shatter-resistant alternative to glass.
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DescriptionPL = Szkło akrylowe (szkło organiczne; inaczej pleksi, pleksiglas, metapleks) – przezroczyste tworzywo sztuczne, którego głównym składnikiem jest polimer – poli(metakrylan metylu) (PMMA).
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Father = of the material, i.e. for PLA is Thermoplast, for Steel is Metal Thermoplast
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SourceURL = http://www.matweb.com/search/DataSheet.aspx?MatGUID=632572aeef2a4224b5ac8fbd4f1b6f77
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YoungsModulus = 2550 MPa
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UltimateTensileStrength = 57.7 MPa
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PoissonRatio = 0.38
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CompressiveStrength = 103 MPa
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Density = 1160 kg/m^3
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ShearModulus = 1.08 GPa
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SourceURL = http://www.matweb.com/search/DataSheet.aspx?MatGUID=632572aeef2a4224b5ac8fbd4f1b6f77
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SpecificHeat = 1480 J/kg/K
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ThermalConductivity = 0.193 W/m/K
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ThermalExpansionCoefficient = 0.000075 m/m/K
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@@ -7,14 +7,14 @@
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Name = AlMg3F24
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NameDE = AlMg3F24
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Father = Metal
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YoungsModulus = 70000 MPa
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UltimateTensileStrength = 250 MPa
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PoissonRatio = 0.3
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Density = 2700 kg/m^3
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KindOfMaterial = Aluminium
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KindOfMaterialDE = Aluminium
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MaterialNumber = 3.3535.26
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Norm = DIN 1725
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YoungsModulus = 70000 MPa
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UltimateTensileStrength = 250 MPa
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PoissonRatio = 0.3
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Density = 2700 kg/m^3
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ShearModulus = 27000 MPa
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ThermalExpansionCoefficient = 0.000023 m/m/K
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UltimateStrain = 5
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@@ -7,14 +7,14 @@
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Name = AlMgSi1F31
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NameDE = AlMgSi1F31
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Father = Metal
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YoungsModulus = 70000 MPa
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UltimateTensileStrength = 310 MPa
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PoissonRatio = 0.3
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Density = 2700 kg/m^3
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KindOfMaterial = Aluminium
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KindOfMaterialDE = Aluminium
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MaterialNumber = 3.2315.72
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Norm = DIN 1725
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YoungsModulus = 70000 MPa
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UltimateTensileStrength = 310 MPa
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PoissonRatio = 0.3
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Density = 2700 kg/m^3
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ShearModulus = 27000 MPa
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ThermalExpansionCoefficient = 0.000023 m/m/K
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UltimateStrain = 10
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@@ -7,14 +7,14 @@
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Name = AlZn4,5Mg1F35
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NameDE = AlZn4,5Mg1F35
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Father = Metal
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YoungsModulus = 70000 MPa
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UltimateTensileStrength = 350 MPa
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PoissonRatio = 0.3
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Density = 2700 kg/m^3
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KindOfMaterial = Aluminium
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KindOfMaterialDE = Aluminium
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MaterialNumber = 3.4335.71
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Norm = DIN 1725
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YoungsModulus = 70000 MPa
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UltimateTensileStrength = 350 MPa
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PoissonRatio = 0.3
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Density = 2700 kg/m^3
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ShearModulus = 27000 MPa
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ThermalExpansionCoefficient = 0.000023 m/m/K
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UltimateStrain = 10
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@@ -7,11 +7,11 @@
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Name = Aluminum 6061-T6
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Description = Precipitation-hardened, Nonferrous Aluminum alloy
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Father = Metal
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KindOfMaterial = Aluminium
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KindOfMaterialDE = Aluminium
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YoungsModulus = 69000 MPa
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UltimateTensileStrength = 310 MPa
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PoissonRatio = 0.33
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Density = 2700 kg/m^3
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KindOfMaterial = Aluminium
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KindOfMaterialDE = Aluminium
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ThermalConductivity = 167 W/m/K
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ProductURL = https://en.wikipedia.org/wiki/6061_aluminium_alloy
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@@ -7,9 +7,9 @@
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Name = Concrete
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Description = A standard C-25 construction concrete
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Father = Aggregate
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StandardCode = Masterformat 03 33 13
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YoungsModulus = 32000 MPa
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PoissonRatio = 0.17
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CompressiveStrength = 25 MPa
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Density = 2400 kg/m^3
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StandardCode = Masterformat 03 33 13
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ProductURL = https://en.wikipedia.org/wiki/Concrete
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@@ -5,12 +5,12 @@
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[FCMat]
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Name = Polyamide 6
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SourceURL = http://www.matweb.com/search/datasheet.aspx?MatGUID=8d78f3cfcb6f49d595896ce6ce6a2ef1
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YoungsModulus = 2930 MPa
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UltimateTensileStrength = 75.5 MPa
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PoissonRatio = 0.39
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CompressiveStrength = 67.6 MPa
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Density = 1150 kg/m^3
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SourceURL = http://www.matweb.com/search/datasheet.aspx?MatGUID=8d78f3cfcb6f49d595896ce6ce6a2ef1
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SpecificHeat = 1670 J/kg/K
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ThermalConductivity = 0.262 W/m/K
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ThermalExpansionCoefficient = 0.000082 m/m/K
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@@ -5,13 +5,13 @@
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[FCMat]
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Name = PET
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SourceURL = http://www.matweb.com/search/DataSheet.aspx?MatGUID=a696bdcdff6f41dd98f8eec3599eaa20
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YoungsModulus = 3150 MPa
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UltimateTensileStrength = 38.8 MPa
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PoissonRatio = 0.36
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CompressiveStrength = 38.0 MPa
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Density = 1380 kg/m^3
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ShearModulus = 0.0385 GPa
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SourceURL = http://www.matweb.com/search/DataSheet.aspx?MatGUID=a696bdcdff6f41dd98f8eec3599eaa20
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SpecificHeat = 1140 J/kg/K
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ThermalConductivity = 0.181 W/m/K
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ThermalExpansionCoefficient = 0.000072 m/m/K
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@@ -7,11 +7,11 @@
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Name = PLA
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Description = Polylactic acid or polylactide (PLA, Poly) is a biodegradable thermoplastic aliphatic polyester derived from renewable resources, such as corn starch, tapioca roots, chips, starch or sugarcane.
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Father = Thermoplast
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SourceURL = https://www.sd3d.com/wp-content/uploads/2017/06/MaterialTDS-PLA_01.pdf
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YoungsModulus = 3640 MPa
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UltimateTensileStrength = 26.4 MPa
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PoissonRatio = 0.36
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Density = 1240 kg/m^3
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SourceURL = https://www.sd3d.com/wp-content/uploads/2017/06/MaterialTDS-PLA_01.pdf
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SpecificHeat = 1800 J/kg/K
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ThermalConductivity = 0.130 W/m/K
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ThermalExpansionCoefficient = 0.000041 m/m/K
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@@ -5,12 +5,12 @@
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[FCMat]
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Name = Polypropylene
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SourceURL = http://www.matweb.com/search/DataSheet.aspx?MatGUID=a882a1c603374e278d062f106dfda95b
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YoungsModulus = 1470 MPa
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UltimateTensileStrength = 79.7 MPa
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PoissonRatio = 0.44
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CompressiveStrength = 10 MPa
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Density = 916 kg/m^3
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SourceURL = http://www.matweb.com/search/DataSheet.aspx?MatGUID=a882a1c603374e278d062f106dfda95b
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SpecificHeat = 1920 J/kg/K
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ThermalConductivity = 0.249 W/m/K
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ThermalExpansionCoefficient = 0.000123 m/m/K
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@@ -5,12 +5,12 @@
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[FCMat]
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Name = PTFE
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SourceURL = http://www.matweb.com/search/datasheet.aspx?MatGUID=4d14eac958e5401a8fd152e1261b6843
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YoungsModulus = 564 MPa
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UltimateTensileStrength = 34.6 MPa
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PoissonRatio = 0.46
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CompressiveStrength = 10.2 MPa
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Density = 2070 kg/m^3
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SourceURL = http://www.matweb.com/search/datasheet.aspx?MatGUID=4d14eac958e5401a8fd152e1261b6843
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SpecificHeat = 1010 J/kg/K
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ThermalConductivity = 0.263 W/m/K
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ThermalExpansionCoefficient = 0.000108 m/m/K
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@@ -5,11 +5,11 @@
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[FCMat]
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Name = PVC
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SourceURL = http://www.matweb.com/search/DataSheet.aspx?MatGUID=1f650966ec834bb8833dd4c6e3116079
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YoungsModulus = 2800 MPa
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UltimateTensileStrength = 50 MPa
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PoissonRatio = 0.38
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Density = 1380 kg/m^3
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SourceURL = http://www.matweb.com/search/DataSheet.aspx?MatGUID=1f650966ec834bb8833dd4c6e3116079
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SpecificHeat = 1000 J/kg/K
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ThermalConductivity = 0.150 W/m/K
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ThermalExpansionCoefficient = 0.000075 m/m/K
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@@ -9,14 +9,14 @@ Description = High-strength carbon steel
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DescriptionDE = höchste Beanspruchung, Achsen, Wellen, Ritzel, Nocken, Kegelräder
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DescriptionPL = Wysokowytrzymała stal węglowa
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Father = Metal
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YoungsModulus = 210000 MPa
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UltimateTensileStrength = 1000 MPa
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PoissonRatio = 0.3
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Density = 7800 kg/m^3
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KindOfMaterial = Case-hardened steel
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KindOfMaterialDE = Einsatzstahl
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MaterialNumber = 1.5919
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Norm = EN 10084
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YoungsModulus = 210000 MPa
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UltimateTensileStrength = 1000 MPa
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PoissonRatio = 0.3
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Density = 7800 kg/m^3
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ShearModulus = 81000 MPa
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ThermalExpansionCoefficient = 0.000011 m/m/K
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UltimateStrain = 9
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@@ -8,14 +8,14 @@ Name = 17CrNiMo6
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NameDE = 17CrNiMo6
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DescriptionDE = höchste Beanspruchung, Wellen, Zahnräder
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Father = Metal
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YoungsModulus = 210000 MPa
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UltimateTensileStrength = 1150 MPa
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PoissonRatio = 0.3
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Density = 7800 kg/m^3
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KindOfMaterial = Case-hardened steel
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KindOfMaterialDE = Einsatzstahl
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MaterialNumber = 1.6587
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Norm = EN 10084
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YoungsModulus = 210000 MPa
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UltimateTensileStrength = 1150 MPa
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PoissonRatio = 0.3
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Density = 7800 kg/m^3
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ShearModulus = 81000 MPa
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ThermalExpansionCoefficient = 0.000011 m/m/K
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UltimateStrain = 8
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@@ -10,14 +10,14 @@ Description = Case hardened alloy steel
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DescriptionDE = kleiner Vergütungsdurchmesser, gut schweißbar
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DescriptionPL = Stal stopowa do nawęglania
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Father = Metal
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YoungsModulus = 210000 MPa
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UltimateTensileStrength = 400 MPa
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PoissonRatio = 0.3
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Density = 7800 kg/m^3
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KindOfMaterial = Heat-treatable steel
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KindOfMaterialDE = Vergütungsstahl
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MaterialNumber = 1.0402
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Norm = EN 10083-1
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YoungsModulus = 210000 MPa
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UltimateTensileStrength = 400 MPa
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PoissonRatio = 0.3
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Density = 7800 kg/m^3
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ShearModulus = 81000 MPa
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ThermalExpansionCoefficient = 0.000011 m/m/K
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UltimateStrain = 27
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@@ -9,14 +9,14 @@ NameDE = C35
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Description = Non-alloy quality steel
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DescriptionPL = Wysokogatunkowa stal niestopowa
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Father = Metal
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YoungsModulus = 210000 MPa
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UltimateTensileStrength = 480 MPa
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PoissonRatio = 0.3
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Density = 7800 kg/m^3
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KindOfMaterial = Heat-treatable steel
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KindOfMaterialDE = Vergütungsstahl
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MaterialNumber = 1.0501
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Norm = EN 10083-1
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YoungsModulus = 210000 MPa
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UltimateTensileStrength = 480 MPa
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PoissonRatio = 0.3
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Density = 7800 kg/m^3
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ShearModulus = 81000 MPa
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ThermalExpansionCoefficient = 0.000011 m/m/K
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UltimateStrain = 21
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@@ -9,14 +9,14 @@ NameDE = C45
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Description = Non-alloy quality steel
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DescriptionPL = Wysokogatunkowa stal niestopowa
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Father = Metal
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YoungsModulus = 210000 MPa
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UltimateTensileStrength = 580 MPa
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PoissonRatio = 0.3
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Density = 7800 kg/m^3
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KindOfMaterial = Heat-treatable steel
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KindOfMaterialDE = Vergütungsstahl
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MaterialNumber = 1.0503
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Norm = EN 10083-1
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YoungsModulus = 210000 MPa
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UltimateTensileStrength = 580 MPa
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PoissonRatio = 0.3
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Density = 7800 kg/m^3
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ShearModulus = 81000 MPa
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ThermalExpansionCoefficient = 0.000011 m/m/K
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UltimateStrain = 14
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@@ -9,14 +9,14 @@ NameDE = C60
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Description = Non-alloy quality steel
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DescriptionPL = Wysokogatunkowa stal niestopowa
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Father = Metal
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YoungsModulus = 210000 MPa
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UltimateTensileStrength = 650 MPa
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PoissonRatio = 0.3
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Density = 7800 kg/m^3
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KindOfMaterial = Heat-treatable steel
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KindOfMaterialDE = Vergütungsstahl
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MaterialNumber = 1.0601
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Norm = EN 10083-1
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YoungsModulus = 210000 MPa
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UltimateTensileStrength = 650 MPa
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PoissonRatio = 0.3
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||||
Density = 7800 kg/m^3
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||||
ShearModulus = 81000 MPa
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||||
ThermalExpansionCoefficient = 0.000011 m/m/K
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UltimateStrain = 11
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@@ -8,14 +8,14 @@ Name = 20NiCrMo2
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NameDE = 21NiCrMo2
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DescriptionDE = höchste Beanspruchung, Wellen, Zahnräder
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||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
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||||
UltimateTensileStrength = 900 MPa
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||||
PoissonRatio = 0.3
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||||
Density = 7800 kg/m^3
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||||
KindOfMaterial = Case-hardened steel
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||||
KindOfMaterialDE = Einsatzstahl
|
||||
MaterialNumber = 1.6523
|
||||
Norm = EN 10084
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||||
YoungsModulus = 210000 MPa
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||||
UltimateTensileStrength = 900 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
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||||
UltimateStrain = 10
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||||
|
||||
@@ -7,14 +7,14 @@
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||||
Name = 28Mn6
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||||
NameDE = 28Mn6
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||||
Father = Metal
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||||
YoungsModulus = 210000 MPa
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||||
UltimateTensileStrength = 800 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.117
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 800 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
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||||
UltimateStrain = 13
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||||
|
||||
@@ -7,14 +7,14 @@
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||||
Name = 2C10
|
||||
NameDE = Ck10
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 640 MPa
|
||||
PoissonRatio = 0.3
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||||
Density = 7800 kg/m^3
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||||
KindOfMaterial = Case-hardened steel
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||||
KindOfMaterialDE = Einsatzstahl
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||||
MaterialNumber = 1.1121
|
||||
Norm = EN 10084
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||||
YoungsModulus = 210000 MPa
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||||
UltimateTensileStrength = 640 MPa
|
||||
PoissonRatio = 0.3
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||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
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||||
UltimateStrain = 0
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||||
|
||||
@@ -8,14 +8,14 @@ Name = 30CrNiMo8
|
||||
NameDE = 30CrNiMo8
|
||||
DescriptionDE = höchste Beanspruchung, Wellen, Zahnräder
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 1250 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.658
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 1250 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
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||||
UltimateStrain = 9
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||||
|
||||
@@ -8,14 +8,14 @@ Name = 34CrNiMo6
|
||||
NameDE = 34CrNiMo6
|
||||
DescriptionDE = höchste Beanspruchung, Wellen, Zahnräder
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 1200 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.6582
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 1200 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 9
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = 36CrNiMo4
|
||||
NameDE = 36CrNiMo4
|
||||
DescriptionDE = höchste Beanspruchung, Wellen, Zahnräder
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 1100 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.6511
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 1100 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 10
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = 36NiCrMo16
|
||||
NameDE = 36NiCrMo16
|
||||
DescriptionDE = höchste Beanspruchung, Wellen, Zahnräder
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 1250 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.6773
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 1250 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 9
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = 3C15
|
||||
NameDE = Cm15
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 740 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Case-hardened steel
|
||||
KindOfMaterialDE = Einsatzstahl
|
||||
MaterialNumber = 1.114
|
||||
Norm = EN 10084
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 740 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = 3C22
|
||||
NameDE = Cm22
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 550 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.1149
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 550 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 24
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = 3C35
|
||||
NameDE = Cm35
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 630 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.118
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 630 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 17
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = 3V45
|
||||
NameDE = Cm45
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 700 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.1201
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 700 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 14
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = C10
|
||||
NameDE = C10
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 650 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Case-hardened steel
|
||||
KindOfMaterialDE = Einsatzstahl
|
||||
MaterialNumber = 1.0301
|
||||
Norm = DIN 17210
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 650 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 16
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = C15
|
||||
NameDE = C15
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 750 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Case-hardened steel
|
||||
KindOfMaterialDE = Einsatzstahl
|
||||
MaterialNumber = 1.0401
|
||||
Norm = DIN 17210
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 750 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 14
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = C22E
|
||||
NameDE = Ck22
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 500 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.1151
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 500 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 20
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = C25E
|
||||
NameDE = Ck25
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 550 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.1158
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 550 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 19
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = C30E
|
||||
NameDE = Ck30
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 600 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.1178
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 600 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 18
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = C40E
|
||||
NameDE = Ck40
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 650 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.1186
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 650 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 16
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = C50E
|
||||
NameDE = Ck50
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 750 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.1206
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 750 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 13
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = C55E
|
||||
NameDE = Ck55
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 800 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.1203
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 800 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 13
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = C60E
|
||||
NameDE = Ck60
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 850 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Heat-treatable steel
|
||||
KindOfMaterialDE = Vergütungsstahl
|
||||
MaterialNumber = 1.1221
|
||||
Norm = EN 10083-1
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 850 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 13
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = E295 GC
|
||||
NameDE = St50-2K
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 590 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.0533
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 590 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = E295
|
||||
NameDE = St50-2
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 490 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.005
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 490 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 20
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = E335 GC
|
||||
NameDE = St60-2K
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 690 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.0543
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 690 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = E335
|
||||
NameDE = St60-2
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 590 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.006
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 590 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 16
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = E360 GC
|
||||
NameDE = St70-2K
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 780 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.0633
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 780 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = E360
|
||||
NameDE = St70-2
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 690 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.007
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 690 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 11
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJL-100
|
||||
NameDE = GG-10
|
||||
DescriptionDE = für gering beanspruchte Teile
|
||||
Father = Metal
|
||||
YoungsModulus = 88000 MPa
|
||||
UltimateTensileStrength = 100 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.601
|
||||
Norm = EN 1561
|
||||
YoungsModulus = 88000 MPa
|
||||
UltimateTensileStrength = 100 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 34000 MPa
|
||||
ThermalExpansionCoefficient = 0.00001 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJL-150
|
||||
NameDE = GG-15
|
||||
DescriptionDE = für dünnwandige Teile wie Gehäuse, Ständer
|
||||
Father = Metal
|
||||
YoungsModulus = 95000 MPa
|
||||
UltimateTensileStrength = 150 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.6015
|
||||
Norm = EN 1561
|
||||
YoungsModulus = 95000 MPa
|
||||
UltimateTensileStrength = 150 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 37000 MPa
|
||||
ThermalExpansionCoefficient = 0.00001 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJL-200
|
||||
NameDE = GG-20
|
||||
DescriptionDE = Hebel, Lager , Lagerböcke
|
||||
Father = Metal
|
||||
YoungsModulus = 105000 MPa
|
||||
UltimateTensileStrength = 200 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.602
|
||||
Norm = EN 1561
|
||||
YoungsModulus = 105000 MPa
|
||||
UltimateTensileStrength = 200 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 40000 MPa
|
||||
ThermalExpansionCoefficient = 0.00001 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = EN-GJL-250
|
||||
NameDE = GG-25
|
||||
Father = Metal
|
||||
YoungsModulus = 115000 MPa
|
||||
UltimateTensileStrength = 250 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.6025
|
||||
Norm = EN 1561
|
||||
YoungsModulus = 115000 MPa
|
||||
UltimateTensileStrength = 250 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 44000 MPa
|
||||
ThermalExpansionCoefficient = 0.00001 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJL-300
|
||||
NameDE = GG-30
|
||||
DescriptionDE = hochbeanspruchbar, für Motorständer, Lagerschalen
|
||||
Father = Metal
|
||||
YoungsModulus = 125000 MPa
|
||||
UltimateTensileStrength = 300 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.603
|
||||
Norm = EN 1561
|
||||
YoungsModulus = 125000 MPa
|
||||
UltimateTensileStrength = 300 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 48000 MPa
|
||||
ThermalExpansionCoefficient = 0.00001 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJL-350
|
||||
NameDE = GG-35
|
||||
DescriptionDE = höchstbeanspruchbar, für Teile mit konstanter Wanddicke, Pressenständer, Turbinengehäuse
|
||||
Father = Metal
|
||||
YoungsModulus = 135000 MPa
|
||||
UltimateTensileStrength = 350 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.6035
|
||||
Norm = EN 1561
|
||||
YoungsModulus = 135000 MPa
|
||||
UltimateTensileStrength = 350 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 52000 MPa
|
||||
ThermalExpansionCoefficient = 0.00001 m/m/K
|
||||
UltimateStrain = 15
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJMB-350-10
|
||||
NameDE = GTS 35-10
|
||||
DescriptionDE = gut spanbar, Schaltgabeln, Getriebe-, Achsgehäuse
|
||||
Father = Metal
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 350 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.8135
|
||||
Norm = EN 1562
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 350 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 67000 MPa
|
||||
ThermalExpansionCoefficient = 0.00001 m/m/K
|
||||
UltimateStrain = 10
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJMB-550-4
|
||||
NameDE = GTS 55-04
|
||||
DescriptionDE = Randschichthärtung, Kurbelwellen, Bremsträger, Federböcke, Kipphebel
|
||||
Father = Metal
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 550 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.8155
|
||||
Norm = EN 1562
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 550 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 67000 MPa
|
||||
ThermalExpansionCoefficient = 0.00001 m/m/K
|
||||
UltimateStrain = 2
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJMB-650-2
|
||||
NameDE = GTS 65-02
|
||||
DescriptionDE = Gabelköpfe
|
||||
Father = Metal
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 650 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.8165
|
||||
Norm = EN 1562
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 650 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 67000 MPa
|
||||
ThermalExpansionCoefficient = 0.00001 m/m/K
|
||||
UltimateStrain = 2
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJMW-350-4
|
||||
NameDE = GTW 35-04
|
||||
DescriptionDE = dünnwandige Teile, Fittings, Beschläge, Förderketten
|
||||
Father = Metal
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 350 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.8035
|
||||
Norm = EN 1562
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 350 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 67000 MPa
|
||||
ThermalExpansionCoefficient = 0.00001 m/m/K
|
||||
UltimateStrain = 4
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJMW-360-12
|
||||
NameDE = GTW S38-12
|
||||
DescriptionDE = für Verbundschweißteile
|
||||
Father = Metal
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 380 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.8038
|
||||
Norm = EN 1562
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 380 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 67000 MPa
|
||||
ThermalExpansionCoefficient = 0.00001 m/m/K
|
||||
UltimateStrain = 5
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJMW-400-5
|
||||
NameDE = GTW 40-05
|
||||
DescriptionDE = gut schweißbar, Auspuffkrümmer, Schraubzwingen
|
||||
Father = Metal
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 400 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.804
|
||||
Norm = EN 1562
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 400 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 67000 MPa
|
||||
ThermalExpansionCoefficient = 0.00001 m/m/K
|
||||
UltimateStrain = 7
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJMW-450-7
|
||||
NameDE = GTW 45-07
|
||||
DescriptionDE = schlagfest, Fahrwerksteile
|
||||
Father = Metal
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 450 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.8045
|
||||
Norm = EN 1562
|
||||
YoungsModulus = 175000 MPa
|
||||
UltimateTensileStrength = 450 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 67000 MPa
|
||||
ThermalExpansionCoefficient = 0.00001 m/m/K
|
||||
UltimateStrain = 10
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJS-400-15
|
||||
NameDE = GGG-40
|
||||
DescriptionDE = Pumpen-, Getriebegehäuse
|
||||
Father = Metal
|
||||
YoungsModulus = 167000 MPa
|
||||
UltimateTensileStrength = 400 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.704
|
||||
Norm = EN 1563
|
||||
YoungsModulus = 167000 MPa
|
||||
UltimateTensileStrength = 400 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 65000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 15
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJS-500-7
|
||||
NameDE = GGG-50
|
||||
DescriptionDE = Seiltrommeln, Bremsteile, Zylinderköpfe
|
||||
Father = Metal
|
||||
YoungsModulus = 170000 MPa
|
||||
UltimateTensileStrength = 500 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.705
|
||||
Norm = EN 1563
|
||||
YoungsModulus = 170000 MPa
|
||||
UltimateTensileStrength = 500 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 66000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 2
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJS-600-3
|
||||
NameDE = GGG-60
|
||||
DescriptionDE = Kurbelwellen, Stangen
|
||||
Father = Metal
|
||||
YoungsModulus = 177000 MPa
|
||||
UltimateTensileStrength = 600 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.706
|
||||
Norm = EN 1563
|
||||
YoungsModulus = 177000 MPa
|
||||
UltimateTensileStrength = 600 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 67000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 2
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJS-700-2
|
||||
NameDE = GGG-70
|
||||
DescriptionDE = Kurbelwellen, Zahnräder, Turbinenschaufeln
|
||||
Father = Metal
|
||||
YoungsModulus = 180000 MPa
|
||||
UltimateTensileStrength = 700 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.707
|
||||
Norm = EN 1563
|
||||
YoungsModulus = 180000 MPa
|
||||
UltimateTensileStrength = 700 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 67000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 2
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = EN-GJS-800-1
|
||||
NameDE = GGG-80
|
||||
DescriptionDE = Zahnräder
|
||||
Father = Metal
|
||||
YoungsModulus = 180000 MPa
|
||||
UltimateTensileStrength = 800 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
KindOfMaterial = Cast iron
|
||||
KindOfMaterialDE = Guss
|
||||
MaterialNumber = 0.708
|
||||
Norm = EN 1563
|
||||
YoungsModulus = 180000 MPa
|
||||
UltimateTensileStrength = 800 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7200 kg/m^3
|
||||
ShearModulus = 67000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 2
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = G16Mn5
|
||||
NameDE = GS-16Mn5N
|
||||
DescriptionDE = Gehäuse, Zahnräder, Bremsscheiben
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 430 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cast steel
|
||||
KindOfMaterialDE = Stahlguss
|
||||
MaterialNumber = 1.1131
|
||||
Norm = DIN 1681
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 430 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = G200
|
||||
NameDE = GS 38
|
||||
DescriptionDE = mittlere dynamische und stoßartige Belastung, gut schweißbar
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 380 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cast steel
|
||||
KindOfMaterialDE = Stahlguss
|
||||
MaterialNumber = 1.042
|
||||
Norm = DIN 1681
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 380 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 25
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = G20Mn5
|
||||
NameDE = GS-20Mn5v
|
||||
DescriptionDE = Gehäuse, Zahnräder, Bremsscheiben
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 500 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cast steel
|
||||
KindOfMaterialDE = Stahlguss
|
||||
MaterialNumber = 1.112
|
||||
Norm = DIN 1681
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 500 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = G230
|
||||
NameDE = GS 45
|
||||
DescriptionDE = mittlere dynamische und stoßartige Belastung, gut schweißbar
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 450 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cast steel
|
||||
KindOfMaterialDE = Stahlguss
|
||||
MaterialNumber = 1.0446
|
||||
Norm = DIN 1681
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 450 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 22
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = G260
|
||||
NameDE = GS 52
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 520 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cast steel
|
||||
KindOfMaterialDE = Stahlguss
|
||||
MaterialNumber = 1.0552
|
||||
Norm = DIN 1681
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 520 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 18
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = G300
|
||||
NameDE = GS 60
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 600 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cast steel
|
||||
KindOfMaterialDE = Stahlguss
|
||||
MaterialNumber = 1.0558
|
||||
Norm = DIN 1681
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 600 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 15
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = G30Mn5
|
||||
NameDE = GS-30Mn5
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 520 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cast steel
|
||||
KindOfMaterialDE = Stahlguss
|
||||
MaterialNumber = 1.1165
|
||||
Norm = DIN 17205
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 520 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 14
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = S185
|
||||
NameDE = St33
|
||||
DescriptionDE = für geringe Beanspruchung
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 310 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.0035
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 310 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 18
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = S235JO
|
||||
NameDE = St37-3U
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 360 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.0114
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 360 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 26
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = S235JR
|
||||
NameDE = St37-2
|
||||
DescriptionDE = üblich für mäßige Beanspruchung, gut schweißbar, nicht für Hilfsrahmen
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 360 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.0037
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 360 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 26
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = S235JRG1
|
||||
NameDE = USt37-2
|
||||
DescriptionDE = üblich für mäßige Beanspruchung
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 360 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.0036
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 360 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 26
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = S260NC
|
||||
NameDE = QStE260 N
|
||||
DescriptionDE = gut biegbar, Fahrgestellrahmen, Hilfsrahmen, nicht für Punktlasten
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 350 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cold forming steel
|
||||
KindOfMaterialDE = Kaltumformstahl
|
||||
MaterialNumber = 1.0971
|
||||
Norm = SEW 092
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 350 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 30
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = S275JO
|
||||
NameDE = St44-3U
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 430 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.0143
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 430 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 22
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = S275JR
|
||||
NameDE = St44-2
|
||||
DescriptionDE = Wellen, Achsen, gut bearbeitbar, gut schweißbar
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 430 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.0044
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 430 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 22
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = S275N
|
||||
NameDE = St E 275
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 370 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Fine grain steel
|
||||
KindOfMaterialDE = Feinkornstahl
|
||||
MaterialNumber = 1.049
|
||||
Norm = EN 10113-2
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 370 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 24
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = S335JO
|
||||
NameDE = St60-2U
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 510 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.0553
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 510 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 22
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = S335JR
|
||||
NameDE = St53-3
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 510 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.0045
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 510 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 22
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = S335N
|
||||
NameDE = St E 355
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 470 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Fine grain steel
|
||||
KindOfMaterialDE = Feinkornstahl
|
||||
MaterialNumber = 1.0545
|
||||
Norm = EN 10113-2
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 470 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 22
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = S340MC
|
||||
NameDE = QStE340 TM
|
||||
DescriptionDE = gut biegbar, Fahrgestellrahmen, Hilfsrahmen, nicht für Punktlasten
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 480 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cold forming steel
|
||||
KindOfMaterialDE = Kaltumformstahl
|
||||
MaterialNumber = 1.0974
|
||||
Norm = SEW 092
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 480 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 25
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = S355J2G3
|
||||
NameDE = St52-3
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 510 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.057
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 510 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 22
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = S380MC
|
||||
NameDE = QStE380 TM
|
||||
DescriptionDE = gut biegbar, Fahrgestellrahmen, Hilfsrahmen
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 520 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cold forming steel
|
||||
KindOfMaterialDE = Kaltumformstahl
|
||||
MaterialNumber = 1.0978
|
||||
Norm = SEW 092
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 520 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 23
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = S420MC
|
||||
NameDE = QStE420 TM
|
||||
DescriptionDE = gut biegbar, Fahrgestellrahmen, Hilfsrahmen
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 550 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cold forming steel
|
||||
KindOfMaterialDE = Kaltumformstahl
|
||||
MaterialNumber = 1.098
|
||||
Norm = EN 10149
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 550 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 21
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = S420N
|
||||
NameDE = St E 420
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 520 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Fine grain steel
|
||||
KindOfMaterialDE = Feinkornstahl
|
||||
MaterialNumber = 1.8902
|
||||
Norm = EN 10113-2
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 520 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 19
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = S460MC
|
||||
NameDE = QStE460 TM
|
||||
DescriptionDE = gut biegbar, Fahrgestellrahmen, Hilfsrahmen
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 590 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cold forming steel
|
||||
KindOfMaterialDE = Kaltumformstahl
|
||||
MaterialNumber = 1.0982
|
||||
Norm = SEW 092
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 590 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 19
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = S460N
|
||||
NameDE = St E 460
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 550 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Fine grain steel
|
||||
KindOfMaterialDE = Feinkornstahl
|
||||
MaterialNumber = 1.8901
|
||||
Norm = EN 10113-2
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 550 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 17
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = S500MC
|
||||
NameDE = QStE500 TM
|
||||
DescriptionDE = gut biegbar, Fahrgestellrahmen, Hilfsrahmen
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 620 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cold forming steel
|
||||
KindOfMaterialDE = Kaltumformstahl
|
||||
MaterialNumber = 1.0984
|
||||
Norm = EN 10149
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 620 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 17
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = S550MC
|
||||
NameDE = QStE550 TM
|
||||
DescriptionDE = gut biegbar, Fahrgestellrahmen, Hilfsrahmen
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 680 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cold forming steel
|
||||
KindOfMaterialDE = Kaltumformstahl
|
||||
MaterialNumber = 1.0986
|
||||
Norm = SEW 092
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 680 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 15
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = S690MC
|
||||
NameDE = QStE690 TM
|
||||
DescriptionDE = gut biegbar, Fahrgestellrahmen, Hilfsrahmen
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 790 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Cold forming steel
|
||||
KindOfMaterialDE = Kaltumformstahl
|
||||
MaterialNumber = 1.0966
|
||||
Norm = SEW 092
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 790 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 15
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = St 37-2K
|
||||
NameDE = St 37-2K
|
||||
DescriptionDE = mäßige Beanspruchung
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 460 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Mild steel
|
||||
KindOfMaterialDE = Baustahl
|
||||
MaterialNumber = 1.0161
|
||||
Norm = EN 10025
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 460 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = St E 255
|
||||
NameDE = St E 255
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 360 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Fine grain steel
|
||||
KindOfMaterialDE = Feinkornstahl
|
||||
MaterialNumber = 1.0461
|
||||
Norm = DIN 17102
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 360 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = St E 315
|
||||
NameDE = St E 315
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 440 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Fine grain steel
|
||||
KindOfMaterialDE = Feinkornstahl
|
||||
MaterialNumber = 1.0505
|
||||
Norm = DIN 17102
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 440 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = St E 380
|
||||
NameDE = St E 380
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 500 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Fine grain steel
|
||||
KindOfMaterialDE = Feinkornstahl
|
||||
MaterialNumber = 1.89
|
||||
Norm = DIN 17102
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 500 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = St E 460
|
||||
NameDE = St E 460
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 560 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Fine grain steel
|
||||
KindOfMaterialDE = Feinkornstahl
|
||||
MaterialNumber = 1.8905
|
||||
Norm = DIN 17102
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 560 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = St E 500
|
||||
NameDE = St E 500
|
||||
Father = Metal
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 610 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Fine grain steel
|
||||
KindOfMaterialDE = Feinkornstahl
|
||||
MaterialNumber = 1.8907
|
||||
Norm = DIN 17102
|
||||
YoungsModulus = 210000 MPa
|
||||
UltimateTensileStrength = 610 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 0
|
||||
|
||||
@@ -8,14 +8,14 @@ Name = X2CrNiMoN17-13-3
|
||||
NameDE = X2CrNiMoN 17 13 3
|
||||
DescriptionDE = schlecht spanbar, gut schweißbar, gut kaltumformbar, Achsen, Wellen, Wärmetauscher
|
||||
Father = Metal
|
||||
YoungsModulus = 200000 MPa
|
||||
UltimateTensileStrength = 580 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Stainless steel
|
||||
KindOfMaterialDE = Niro
|
||||
MaterialNumber = 1.4429
|
||||
Norm = EN 10088
|
||||
YoungsModulus = 200000 MPa
|
||||
UltimateTensileStrength = 580 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 35
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = X2CrNiN24-4
|
||||
NameDE = -
|
||||
Father = Metal
|
||||
YoungsModulus = 200000 MPa
|
||||
UltimateTensileStrength = 600 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Stainless steel
|
||||
KindOfMaterialDE = Niro
|
||||
MaterialNumber = 1.4362
|
||||
Norm = EN 10088
|
||||
YoungsModulus = 200000 MPa
|
||||
UltimateTensileStrength = 600 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 25
|
||||
|
||||
@@ -7,14 +7,14 @@
|
||||
Name = X39CrMo17-1
|
||||
NameDE = -
|
||||
Father = Metal
|
||||
YoungsModulus = 213000 MPa
|
||||
UltimateTensileStrength = 750 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
KindOfMaterial = Stainless steel
|
||||
KindOfMaterialDE = Niro
|
||||
MaterialNumber = 1.4122
|
||||
Norm = EN 10088
|
||||
YoungsModulus = 213000 MPa
|
||||
UltimateTensileStrength = 750 MPa
|
||||
PoissonRatio = 0.3
|
||||
Density = 7800 kg/m^3
|
||||
ShearModulus = 81000 MPa
|
||||
ThermalExpansionCoefficient = 0.000011 m/m/K
|
||||
UltimateStrain = 12
|
||||
|
||||
Some files were not shown because too many files have changed in this diff Show More
Reference in New Issue
Block a user