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41xx steel is a family of SAE steel grades, as specified by the Society of Automotive Engineers (SAE). Alloying elements include chromium and molybdenum, and as a result these materials are often informally referred to as chromoly steel (common variant stylings include chrome-moly, cro-moly, CrMo, CRMO, CR-MOLY, and similar).
AISI grade [7] C Cr Mo Ni Others Melts at [8] Remark 1.4310 X10CrNi18-8 301 0.10 17.5 NS: 8 NS: 1420 For springs 1.4301 X5CrNi18-10 304 < 0.07 18.5 NS: 9 NS: 1450 A very common austenitic stainless steel grade 1.4307 X2CrNi18-9 304L < 0.030 18.5 NS: 9 NS: 1450 Similar to the above but not susceptible to intergranular corrosion thanks to a lower ...
The SAE steel grades system is a standard alloy numbering system (SAE J1086 – Numbering Metals and Alloys) for steel grades maintained by SAE International.. In the 1930s and 1940s, the American Iron and Steel Institute (AISI) and SAE were both involved in efforts to standardize such a numbering system for steels.
4130: 25CrMo4 GS-25CrMo4: 708A30 CDS110: 25CrMo4 (KB) 30CrMo4: SCM 420 SCM 430 SCCrM1 1.7223 1.7225 1.7227 1.3563: 42CrMo4: 4140/4142: 41CrMo4 42CrMo4 42CrMoS4 43CrMo4: 708M40 708A42 709M40 En19 En19C: 41CrMo4 38CrMo4 (KB) G40 CrMo4 42CrMo4: SCM 440 SCM 440H SNB 7 SCM 4M SCM 4 1.6582 1.6562: 34CrNiMo6: 4340: 34CrNiMo6 40NiCrMo8-4: 817M40 En24 ...
525 - Cold worked AISI-4130 (CrMo). Yield Strength / Ultimate Tensile Strength (YS/UTS): 600/700 MPa, density 7.78 g/cm 3 8 tube set 525-Triathlon - almost identical to 525, with the only differences being seat stays are 0.1mm thinner, and chainstays are 0.1mm thicker, than standard 525
Its mechanical properties and response to heat treatment are broadly similar to the AISI 4130 standard alloy steel, also used for bicycle frames, motorcycles, as well as aviation and motor-sport. [3] This material was used to form the front subframes on the Jaguar E-Type of the 1960s. [4] Reynolds 531 is now only available by special order. [3]
A UNS number only defines a specific chemical composition, it does not provided full material specification. Requirements such as material properties (yield strength, ultimate strength, hardness, etc.), heat treatment, form (rolled, cast, forged, flanges, tubes, bars, etc.), purpose (high temperature, boilers and pressure vessels, etc.) and testing methods are all specified in the material or ...
Specification for carbon steel electrodes for shielded metal arc welding AWS A5.18: Specification for carbon steel electrodes and rods for gas shielded arc welding AWS B1.10: Guide for the nondestructive examination of welds AWS B2.1: Specification for Welding Procedure and Performance Qualification AWS D1.1: Structural welding (steel) AWS D1.2