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Stainless Steel 310S Plates are composed of up to 24% chromium, 19% nickel, and up to 0.08% carbon, along with other trace elements such as manganese, sulfur, phosphorus, and silicon. As one of the more commonly used stainless steel alloys, it offers many benefits- it is heat resistant, corrosion resistant, strong, and even has high-temperature oxidation resistance. It can be used in several applications, such as pipes and tubings for evaporators, oil burners, and burners. Its cost-effectiveness makes it ideal for many uses requiring low-cost maintenance materials.

310S SS Plates is an excellent choice for a variety of industries such as chemical and petrochemicals, food processing, power plants, Dairies, Sugar Mills, breweries, and energy production due to its excellent resistance to high temperatures. The high chromium content allows the 310S stainless steel plates to withstand oxidizing atmospheres up to 2100°F (1149°C). It has outstanding weldability characteristics with good notch toughness and ductility. In addition to its corrosion and heat resistance capabilities, it provides excellent low-temperature properties down to -20°F (-29°C ) making it an ideal material for cryogenic applications. Lastly, it has good oxidation resistance that protects scaling up to 2000°F (1093°C ), which makes it the most preferred choice in high-temperature industrial environments.

FAQ's for Stainless Steel 310S Plates

Stainless Steel 310S Plate starts at Rs 200/Kg To Rs 300/Kg.


No, the stainless steel 310S Plate is non-magnetic because it has a higher amount of chromium and nickel, which makes the material more resistant to rust and corrosion while also lowering its magnetic properties.

No, the stainless steel 310S plate is a non-rusting austenitic chromium and nickel alloy designed specifically for high-temperature applications. Its composition contains a higher percentage of chromium, allowing it to resist corrosion with greater severity than other grades of stainless steel. It also offers superior resistance to pitting, crevice corrosion, and oxidation when exposed to high temperatures.

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