7 Years manufacturer 410 Stainless Steel Supply to Rio de Janeiro

7 Years manufacturer
 410 Stainless Steel Supply to Rio de Janeiro

Short Description:

410 Stainless Steel Mechanical Properties Condition Ultimate Tensile Strength (PSI) 0.2% Yield Strength (PSI) Elongation (% In 2in.) Reduction Of Area (%) Hardness Brinell Hardness Rockwell T 100,000 80,000 12 40 * * H 120,000 90,000 12 40 * * Annealed 70,000 40,000 16 45 * * Class2 110,000 85,000 15 45 269 Max * NACE MRO 175 * * * * * 410 Stainless Steel Applications Pump Shafts Valve Components Gas and Steam Turbine Components 410 Stainless Steel Composition Ca...


  • Length: 3-5.8mm or Customization
  • Surface: black, peeled, or rough turned
  • Heat treatment: air-cooling, normalized, annealed, Q&T
  • Smelting process: EAF+LF+VD
  • Product Detail

    Product Tags

    With a positive and progressive attitude to customer's interest, our company continuously improves our product quality to meet the needs of customers and further focuses on safety, reliability, environmental requirements, and innovation of
    7 Years manufacturer 410 Stainless Steel Supply to Rio de Janeiro, If you are interested in any of our products or would like to discuss a custom order, please feel free to contact us. We are looking forward to forming successful business relationships with new clients around the world in the near future.


    410 Stainless Steel Mechanical Properties

    Condition Ultimate Tensile
    Strength (PSI)
    0.2% Yield
    Strength (PSI)
    Elongation
    (% In 2in.)
    Reduction Of
    Area (%)
    Hardness
    Brinell
    Hardness
    Rockwell
    T 100,000 80,000 12 40 * *
    H 120,000 90,000 12 40 * *
    Annealed 70,000 40,000 16 45 * *
    Class2 110,000 85,000 15 45 269
    Max
    *
    NACE
    MRO 175
    * * * * *

    410 Stainless Steel Applications

    • Pump Shafts
    • Valve Components
    • Gas and Steam Turbine Components

    410 Stainless Steel Composition

    • Carbon 0.080-0.150
    • Chromium 11.50-13.50
    • Manganese 1.0 Max
    • Phosphorus 1.0 Max
    • Silicon 1.00 Max
    • Sulfur 0.030 Max

    Backed by Industry Standards

    • UNS S41000
    • ASTM A182
    • ASTM A276
    • ASTM A479

     

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  • American sword smith Walter Sorrells compares and contrasts two blades that he has forged — one made using relatively modern materials and techniques, the other forged in a more traditional style from a form of steel known in Japanese as tamahagane. As a maker who forges both relatively traditional and relatively modern swords in the Japanese tradition, Sorrells is well positioned to dispel some of the myths about both ancient and modern smithing techniques.

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