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  2. Martensitic stainless steel - Wikipedia

    en.wikipedia.org/wiki/Martensitic_stainless_steel

    Martensitic stainless steels can be high- or low-carbon steels built around the composition of iron, 12% up to 17% chromium, carbon from 0.10% (Type 410) up to 1.2% (Type 440C): [8] The chromium and carbon contents are balanced to have a martensitic structure.

  3. SAE steel grades - Wikipedia

    en.wikipedia.org/wiki/SAE_steel_grades

    610 through 613: Martensitic secondary hardening steels. 614 through 619: Martensitic chromium steels. 630 through 635: Semiaustenitic and martensitic precipitation hardening stainless steels. Type 630 is most common PH stainless, better known as 17-4; 17% chromium, 4% nickel. 650 through 653: Austenitic steels strengthened by hot/cold work.

  4. X46Cr13 - Wikipedia

    en.wikipedia.org/wiki/X46Cr13

    X46Cr13 is the European Norm name for a common martensitic stainless steel with the numeric name 1.4034. It is equivalent to American Iron and Steel Institute standard 420C. It has the highest carbon content of the SAE 420 series. [1] [2] [3]

  5. Austenitic stainless steel - Wikipedia

    en.wikipedia.org/wiki/Austenitic_stainless_steel

    In 200 series stainless steels the structure is obtained by adding manganese and nitrogen, with a small amount of nickel content, making 200 series a cost-effective nickel-chromium austenitic type stainless steel. 300 series stainless steels are the larger subgroup. The most common austenitic stainless steel and most common of all stainless ...

  6. List of named alloys - Wikipedia

    en.wikipedia.org/wiki/List_of_named_alloys

    Crucible steel; Damascus steel; Ducol; Hadfield steel; High-speed steel. Mushet steel; HSLA steel; Maraging steel; Reynolds 531; Silicon steel ; Spring steel; Stainless steel (chromium, nickel) AL-6XN; Alloy 20; Celestrium; Marine grade stainless; Martensitic stainless steel; Alloy 28 or Sanicro 28 (nickel, chromium) Surgical stainless steel ...

  7. Maraging steel - Wikipedia

    en.wikipedia.org/wiki/Maraging_steel

    Maraging blades are superior for foil and épée because crack propagation in maraging steel is 10 times slower than in carbon steel, resulting in less frequent breaking of the blade and fewer injuries. [i] [20] Stainless maraging steel is used in bicycle frames (e.g. Reynolds 953 introduced in 2013) [21] and golf club heads. [22]

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