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Stainless Steel Plate

305 Stainless Steel Plate

305 stainless steel is a common austenitic stainless steel containing elements such as chromium, nickel, and manganese. Chromium is the main anti-corrosion element and can combine with oxygen to form a dense oxide film to protect materials from corrosion. Nickel can improve the material's heat resistance and toughness while reducing its magnetism.

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305 stainless steel has good corrosion resistance and can remain stable in various corrosive media.   The oxide film formed on its surface can effectively prevent the contact between the corrosive medium and the material, thereby extending the service life of the material.   305 stainless steel has good heat resistance and can maintain stable performance at high temperatures.   Its high content of nickel element can improve the heat resistance of the material, making it less likely to deform, oxidize or fail at high temperatures.   In addition, it has high strength and hardness and can withstand greater pressure and impact.   Its high content of manganese element can improve the strength and hardness of the material, making it less likely to deform or break when under pressure.   305 stainless steel is often used in the chemical industry, food processing, construction, aerospace, marine engineering, and other fields.

Product Parameters

Product Name305 Stainless Steel Plate
TypePlate
Thickness0.3mm - 200mm
Length2000mm, 2438mm, 3000mm, 5800mm, 6000mm, 12000mm
Width40mm-600mm, 1000mm, 1219mm, 1500mm, 1800mm, 2000mm, 2500mm, 3000mm, 3500mm
StandardASTM, AISI, JIS, GB, DIN, EN
SurfaceBA, 2B, NO.1, NO.4, 4K, HL, 8K
CertificateISO, SGS, BV
Production TechnologyHot Rolling, Cold Rolling
Edge ProcessingEdging, Trimming

Chemical Composition

CSiMnCrNiSP
≤ 0.08 ≤ 1.0 ≤ 2.0 18.0 – 20.0 8.0 – 10.5 ≤ 0.03 ≤ 0.035

Mechanical Properties

Tensile Strength Kb (MPa) Yield Strength σ0.2 (MPa) Elongation D5 (%) Hardness
≥ 520 ≥ 205 ≥ 40 ≤187HB / ≤90HRB / ≤200HV

Physical Performance

Density (g/cm³) Modulus of Elasticity (GPa) Thermal Expansion (10⁻⁶/°C) Thermal Conductivity (W/m·K) Resistivity (μΩ·cm)
8.03 193 16.9 16.2 72
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