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  2. SAE steel grades - Wikipedia

    en.wikipedia.org/wiki/SAE_steel_grades

    Type 304—the most common grade; the classic 18/8 (18% chromium, 8% nickel) stainless steel. Outside of the US it is commonly known as "A2 stainless steel", in accordance with ISO 3506 (not to be confused with A2 tool steel). [6] The Japanese equivalent grade of this material is SUS304.

  3. List of brazing alloys - Wikipedia

    en.wikipedia.org/wiki/List_of_brazing_alloys

    Similar to BAg-1, more economical. For ferrous, nonferrous and dissimilar alloys. Free-flowing, for larger gaps, where fillets are desired. For steel, stainless steel, copper, copper alloys, nickel, nickel alloys, and combinations. Light yellow color. Maximum service temperature 204 °C, intermittently 316 °C. 26: 21: 35: 18: Ag 30 Cu 28 Zn 21 ...

  4. Steel grades - Wikipedia

    en.wikipedia.org/wiki/Steel_grades

    Steel specified by purpose of use and mechanical properties. ... Stainless and heat resistant steels 5x – 8x: ... SNB24-1-5 1.6543 1.6523: 20NiCrMo2-2: 8620: 21NiCrMo22

  5. List of blade materials - Wikipedia

    en.wikipedia.org/wiki/List_of_blade_materials

    440 series has three types: 440A, 440B, and 440C. 440A is a relatively low-cost, highly corrosion-resistant stainless steel. In China, A honest Changjiang Stainless Steel developed 7Cr17MoV, a modified 440A, by adding more Vanadium. [34] 440B is almost identical to 440A but has a higher carbon content range compared to 440A.

  6. Stainless steel - Wikipedia

    en.wikipedia.org/wiki/Stainless_steel

    The average carbon footprint of stainless steel (all grades, all countries) is estimated to be 2.90 kg of CO 2 per kg of stainless steel produced, [97] of which 1.92 kg are emissions from raw materials (Cr, Ni, Mo); 0.54 kg from electricity and steam, and 0.44 kg are direct emissions (i.e., by the stainless steel plant). Note that stainless ...

  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] [18] Stainless maraging steel is used in bicycle frames (e.g. Reynolds 953 introduced in 2013) [19] and golf club heads. [20]

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