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  2. Carbon steel - Wikipedia

    en.wikipedia.org/wiki/Carbon_steel

    Carbon steel is often divided into two main categories: low-carbon steel and high-carbon steel. It may also contain other elements, such as manganese, phosphorus, sulfur, and silicon, which can affect its properties. Carbon steel can be easily machined and welded, making it versatile for various applications.

  3. Wootz steel - Wikipedia

    en.wikipedia.org/wiki/Wootz_steel

    Wootz steel is a crucible steel characterized by a pattern of bands and high carbon content. These bands are formed by sheets of microscopic carbides within a tempered martensite or pearlite matrix in higher- carbon steel , or by ferrite and pearlite banding in lower-carbon steels.

  4. 440C - Wikipedia

    en.wikipedia.org/wiki/440C

    440C (UNS designation S44004) is a martensitic 400 series stainless steel, [1] and has the highest carbon content of the 400 stainless steel series. It can be heat treated to reach hardness of 58 to 60 HRC.

  5. Steel - Wikipedia

    en.wikipedia.org/wiki/Steel

    High-carbon steel was produced in Britain at Broxmouth Hillfort from 490–375 BC, [23] [24] and ultrahigh-carbon steel was produced in the Netherlands from the 2nd-4th centuries AD. [25] The Roman author Horace identifies steel weapons such as the falcata in the Iberian Peninsula, while Noric steel was used by the Roman military. [26]

  6. List of blade materials - Wikipedia

    en.wikipedia.org/wiki/List_of_blade_materials

    1095, a popular high-carbon steel for knives; it is harder but more brittle than lower-carbon steels such as 1055, 1060, 1070, and 1080. It has a carbon content of 0.90-1.03% [7] Many older pocket knives and kitchen knives were made of 1095. With a good heat treat, the high carbon 1095 and O-1 tool steels can make excellent knives.

  7. Tool steel - Wikipedia

    en.wikipedia.org/wiki/Tool_steel

    1.11–1.30% carbon: files, small drills, lathe tools, razor blades, and other light-duty applications where more wear resistance is required without great toughness. Steel of about 0.8% C gets as hard as steel with more carbon, but the free iron carbide particles in 1% or 1.25% carbon steel make it hold an edge better.

  8. Damascus steel - Wikipedia

    en.wikipedia.org/wiki/Damascus_steel

    Damascus steel (Arabic: فولاذ دمشقي) refers to the high carbon crucible steel of the blades of historical swords forged using the wootz process in the Near East, characterized by distinctive patterns of banding and mottling reminiscent of flowing water, sometimes in a "ladder" or "rose" pattern. "Damascus steel" developed a high ...

  9. Hardened steel - Wikipedia

    en.wikipedia.org/wiki/Hardened_steel

    The term hardened steel is often used for a medium or high carbon steel that has been given heat treatment and then quenching followed by tempering. The quenching results in the formation of metastable martensite, the fraction of which is reduced to the desired amount during tempering. This is the most common state for finished articles such as ...

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