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Stainless Steel 316cb Plate is an austenitic stainless steel alloy that contains between 16.0-18.0% chromium, 2–3% molybdenum, 10–14% nickel, 0.045–0.1% nitrogen, and 0.08–0.2% carbon-making it highly resistant to corrosion and oxidation while providing optimal strength, ductility, and formability at higher temperatures. It also features increased levels of manganese, silicon, and nitrogen, which all combine to impart excellent weldability allowing this low-maintenance metal the ability to be used in various projects across a wide range of industries, such as medical equipment and decorative products due to its superior aesthetic quality when polished or machined into intricate shapes when cold worked.
316cb SS Plate is austenitic stainless steel composed of chromium, nickel, and molybdenum. It is highly corrosion-resistant and can be used in a variety of applications involving chlorides, acids, formic acid salts, and precipitation hardening. Its properties include excellent creep strength at elevated temperatures up to 600°C (1110°F), plus good toughness down to cryogenic temperatures.
Stainless Steel 316cb Plate is an austenitic stainless steel alloy that contains between 16.0-18.0% chromium, 2–3% molybdenum, 10–14% nickel, 0.045–0.1% nitrogen, and 0.08–0.2% carbon-making it highly resistant to corrosion and oxidation while providing optimal strength, ductility, and formability at higher temperatures. It also features increased levels of manganese, silicon, and nitrogen, which all combine to impart excellent weldability allowing this low-maintenance metal the ability to be used in various projects across a wide range of industries, such as medical equipment and decorative products due to its superior aesthetic quality when polished or machined into intricate shapes when cold worked.
316cb SS Plate is austenitic stainless steel composed of chromium, nickel, and molybdenum. It is highly corrosion-resistant and can be used in a variety of applications involving chlorides, acids, formic acid salts, and precipitation hardening. Its properties include excellent creep strength at elevated temperatures up to 600°C (1110°F), plus good toughness down to cryogenic temperatures.
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