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What is the high temperature resistance of 304 stainless steel plate?

304 stainless steel plate has a beautiful surface and diverse usage possibilities. It has good corrosion resistance and is longer and more durable than ordinary steel. 304 stainless steel plate has good corrosion resistance and high strength, so it is more likely to be used as a thin plate. It is resistant to high temperature oxidation and high strength, so it can withstand fire and be processed at room temperature, which is easy to plastic process. Because there is no need for surface treatment, it is simple to maintain and clean, with high smoothness and good welding performance.
304 stainless steel plate should be resistant to high temperatures below 800 degrees Celsius and not exceeding 600 degrees Celsius, depending on its service life and plate thickness.
304 stainless steel is a common material in stainless steel, with a density of 7.93g/cm3. It is also known as 18/8 stainless steel in the industry. High temperature resistance of 800 degrees, with good processing performance and high toughness. Widely used in the industrial furniture decoration industry and the food and medical industry. The common marking methods in the market include 06cr19ni10 and SUS304. Among them, 06cr19ni10 generally represents national standard production, 304 generally represents ASTM standard production, and SUS304 represents daily standard production. 304 is a universal stainless steel widely used in the production of equipment and components with good comprehensive performance (corrosion resistance and forming). In order to maintain the inherent corrosion resistance of stainless steel, it must contain more than 18% chromium and more than 8% nickel. 304 stainless steel is a stainless steel brand produced according to the American ASTM standard.
The standard for 304 stainless steel is 8 nickel or above, and the main components of 304 are carbon ≤ 0.08. silicon ≤ 1.00. manganese ≤ 2.00. phosphorus ≤ 0.045. sulfur 0.03. nickel 8.0-10.5. chromium 18-20. The temperature should be avoided at 450-850 ℃.


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