Metal
The steel 21 NiCrMoS 2 is used for wear loaded parts in the vehicle and mechanical engineering with medium core strength, better machinability, high toughness and high fatigue strength (e.g. gears, shafts, axles). The lowest application amounts to -60 °C, the best application up to 60 mm nominal siz
The steel 21 NiCrMoS 2 is used for wear loaded parts in the vehicle and mechanical engineering with medium core strength, better machinability, high toughness and high fatigue strength (e.g. gears, shafts, axles). The lowest application amounts to -60 °C, the best application up to 60 mm nominal siz
The steel 21 NiCrMoS 2 is used for wear loaded parts in the vehicle and mechanical engineering with medium core strength, better machinability, high toughness and high fatigue strength (e.g. gears, shafts, axles). The lowest application amounts to -60 °C, the best application up to 60 mm nominal siz
The steel 21 NiCrMo 2 respectively 23 NiCrMo 2 is used for wear loaded parts in the vehicle and mechanical engineering with medium core strength, high toughness and high fatigue strength (e.g. gears, shafts, axles). The lowest application amounts to -60 °C, the best application up to 60 mm nominal s
The steel 21 NiCrMo 2 respectively 23 NiCrMo 2 is used for wear loaded parts in the vehicle and mechanical engineering with medium core strength, high toughness and high fatigue strength (e.g. gears, shafts, axles). The lowest application amounts to -60 °C, the best application up to 60 mm nominal s
The steel 21 NiCrMo 2 respectively 23 NiCrMo 2 is used for wear loaded parts in the vehicle and mechanical engineering with medium core strength, high toughness and high fatigue strength (e.g. gears, shafts, axles). The lowest application amounts to -60 °C, the best application up to 60 mm nominal s
The steel 21 NiCrMo 2 respectively 23 NiCrMo 2 is used for wear loaded parts in the vehicle and mechanical engineering with medium core strength, high toughness and high fatigue strength (e.g. gears, shafts, axles). The lowest application amounts to -60 °C, the best application up to 60 mm nominal s
Welded precision steel tubes made from St 52-3 are used for thin-walled precision constructional elements with a good surface condition.PropertiesGeneralPropertyTemperatureValueDensity20.0 °C7.83 g/cm³MechanicalPropertyTemperatureValueCommentElastic modulus-100.0 °C217 GPa20.0 °C212 GPa100.0 °C207 G
Welded precision steel tubes made from RSt 37-2 are used for thin-walled precision constructional elements with a good surface condition.PropertiesGeneralPropertyTemperatureValueDensity20.0 °C7.85 g/cm³MechanicalPropertyTemperatureValueCommentElastic modulus-100.0 °C217 GPa20.0 °C212 GPa100.0 °C207
ZSt 70-2 is a bright drawn steel grade for wear and strength loaded parts (bolts, shafts, spindles, springs).PropertiesGeneralPropertyTemperatureValueCommentDensity23.0 °C7.8 - 7.9 g/cm³Typical for High Carbon SteelMechanicalPropertyTemperatureValueCommentElastic modulus23.0 °C200 - 215 GPaTypical f
ZSt 60-2 is a bright drawn steel grade for wear and strength loaded parts (bolts, shafts, spindles).PropertiesGeneralPropertyTemperatureValueCommentDensity23.0 °C7.8 - 7.9 g/cm³Typical for Medium Carbon SteelMechanicalPropertyTemperatureValueCommentElastic modulus23.0 °C200 - 215 GPaTypical for Medi
ZSt 50-2 is a bright drawn steel grade for wear and strength loaded parts (bolts, shafts, spindles).PropertiesGeneralPropertyTemperatureValueCommentDensity23.0 °C7.8 - 7.9 g/cm³Typical for Medium Carbon SteelMechanicalPropertyTemperatureValueCommentElastic modulus23.0 °C200 - 215 GPaTypical for Medi
Material GX2CrNi19-11 belongs to the austenitic steel cast grades which are predominantly used for pressure vessels. This material is weldable without preheating and heat after treatment.PropertiesGeneralPropertyTemperatureValueDensity20.0 °C7.88 g/cm³MechanicalPropertyTemperatureValueCommentElastic
Cold rolled uncoated low carbon steel narrow strip for cold forming.,The non-alloy steel DC04 acc. to DIN EN 10130 is as a deep-draw quality suitable for cold forming of complexest profile forms and components, especially at high deformation speeds (e.g. transfer presses). To freedom of stretcher st
The non-alloy steel DC03 acc. to DIN EN 10130 is suitable for cold forming of simple profile forms and components. Mechanical foldings are possible for thicknesses of up to 1,5 mm. To freedom of stretcher strains applies a period of 3 months after provision of the products for surface type A and B.
Cold rolled uncoated low carbon steel narrow strip for cold forming.,The non-alloy steel DC03 acc. to DIN EN 10130 is suitable for cold forming of simple profile forms and components. Mechanical foldings are possible for thicknesses of up to 1,5 mm. To freedom of stretcher strains applies a period o
The non-alloy steel DC01 acc. to DIN EN 10130 is suitable for cold forming of simple profile forms and components. Mechanical foldings are possible for thicknesses of up to 1,5 mm. To freedom of stretcher strains applies a period of 3 months after provision of the products for surface type B. Weldin
Cu-DLP, mat. No CW023A, is a deoxidized copper with limited, low residual copper-content. To the comparable DIN-make SW-Cu, mat. No 2.0076 acc. to DIN 1787 : 1973-01 applies: Tensile strength and Brinell hardness are increasable by cold forming. SW-Cu is hydrogen resistant and shows the lowest therm
Cu-DLP, mat. No CW023A, is a deoxidized copper with limited, low residual copper-content. To the comparable DIN-make SW-Cu, mat. No 2.0076 acc. to DIN 1787 : 1973-01 applies: Tensile strength and Brinell hardness are increasable by cold forming. SW-Cu is hydrogen resistant and shows the lowest therm
Cu-DLP, mat. No CW023A, is a deoxidized copper with limited, low residual copper-content. To the comparable DIN-make SW-Cu, mat. No 2.0076 acc. to DIN 1787 : 1973-01 applies: Tensile strength and Brinell hardness are increasable by cold forming. SW-Cu is hydrogen resistant and shows the lowest therm
Metal
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