• 316L stainless steel i beam

    Product Description

    316L stainless steel i beam, also known as I-beam, is a kind of steel section with a cross-section in the shape of an I. It is widely used in the construction industry due to its high strength, stiffness and stability.


    Product Detail

    Product Description

    I-shaped steel, also known as I-beam, is a kind of steel section with a cross-section in the shape of an I. It is widely used in the construction industry due to its high strength, stiffness and stability. 316L stainless steel I-shaped steel is a kind of I-shaped steel made of 316L stainless steel, which is austenitic stainless steel with good corrosion resistance and high strength.

    Compared with traditional carbon steel I-shaped steel, 316L stainless steel I-shaped steel has the following advantages:

    1.Corrosion resistance: 316L stainless steel has good corrosion resistance and can be used in corrosive environments such as sea water, chemical industry and so on.

    2.High strength: 316L stainless steel has high yield strength and tensile strength, which can meet the needs of various engineering structures.

    3.Light weight: 316L stainless steel has a low specific gravity, which can reduce the weight of the structure and facilitate transportation and installation.

    4.Beautiful appearance: 316L stainless steel has a good surface quality and does not need to be painted, which can improve the aesthetic quality of the structure.

    5.Long service life: 316L stainless steel has good corrosion resistance and wear resistance, which can extend the service life of the structure.

    In summary, 316L stainless steel I-shaped steel is a kind of high-quality steel section with excellent performance. It can replace traditional carbon steel I-shaped steel to meet the needs of various engineering structures, especially in corrosive environments.

    Product Aplication

    316L stainless steel H-section steel is ideal for use in a variety of applications that require corrosion resistance, high strength, and durability. Some common applications include:

    1.Bridge construction: In bridges, 316L stainless steel H-section steel can be used for bridge beams, supports, and other structural elements where durability and corrosion resistance are essential.

    2.Offshore structures: In offshore oil and gas platforms, it can be used for supports and braces that require high strength and corrosion resistance in saltwater environments.

    3.Chemical processing plants: In chemical processing plants, it can be used for structural supports, piping, and other components that require resistance to corrosive chemicals.

    4.Food handling facilities: In food handling facilities, it is commonly used for structural supports, equipment frames, and other components that require hygiene and corrosion resistance.

    5.Architecture: In architecture, it can be used for interior and exterior structural elements that require a modern aesthetic appearance with exceptional durability.

    In conclusion, 316L stainless steel H-section steel offers superior performance in terms of corrosion resistance, strength, durability, and processing properties. It is an excellent choice for a range of industrial, architectural, and engineering applications where longevity and reliability are critical.

    Technical Parameter

    316L stainless steel I-beam has been carefully designed and optimized during the manufacturing process, and its excellent physical and mechanical properties ensure its reliability in various applications. For structural parts and equipment that require high strength and corrosion resistance, 316L stainless steel I-beams are an ideal choice.

    Product Name 316L stainless steel I-shaped steel
    Chemical composition C (carbon): ≤ 0.030
    Si (silicon): ≤ 1.00
    Mn (manganese): ≤ 2.00
    P (phosphorus): ≤ 0.045
    S (sulfur): ≤ 0.030
    Ni (Nickel): 10.00 - 14.00
    Cr (chromium): 16.00 - 19.00
    Mo (molybdenum): 2.00 - 3.00
    Cu (copper): ≤ 1.00
    N (nitrogen): ≤ 0.10
    Mechanical behavior Tensile strength (Rm): ≥ 485 MPa
    Yield strength (Rp0.2): ≥ 210 MPa
    Elongation (A): ≥ 45%
    Reduction of area (Z): ≥ 60%
    Hardness (HB): ≤ 187
    Physical properties Density (ρ): 7.98 g/cm³
    Specific heat capacity (c): 0.5 KJ/(kg·℃)
    Thermal conductivity (λ): 16.3 W/(m·℃)
    Linear expansion coefficient (α): 1.6×10^-5/℃

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