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Warranty: | 1year |
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NS113 is a high-strength corrosion-resistant alloy steel mainly composed of elements such as chromium, molybdenum, tungsten, and niobium. Among them, the content of chromium is 12-13%, the content of molybdenum is 3-4%, the content of tungsten is 1-2%, and the content of niobium is 0.5-1%. The chemical composition of NS113 alloy steel is designed to enhance its stability and performance in high-temperature, high-pressure, and corrosive media.
The grade of NS113 alloy steel is ASTM A182 F22, which is an important material for high temperature resistance and corrosion resistance. Its high temperature resistance can reach a maximum of 600 ºC, with good corrosion resistance and antioxidant performance, suitable for many high-temperature and high-pressure applications that require high stability.
NS113 alloy steel has good mechanical properties, high strength, good toughness, and can maintain stable performance under high temperature and pressure. In addition, NS113 alloy steel has good machinability and weldability, low manufacturing cost, and broad application prospects.
NS113 alloy steel is suitable for many high-temperature, high-pressure, and corrosive media applications, such as chemical, petroleum, natural gas, and other fields. In the chemical industry, NS113 alloy steel can be used to manufacture equipment such as chemical reactors, evaporators, and heat exchangers; In the field of oil and natural gas, NS113 alloy steel can be used to manufacture components such as oil well drill pipes, oil pipes, and submarine pipelines.
In summary, NS113 is a high-strength corrosion-resistant alloy steel with excellent high-temperature and corrosion resistance, suitable for high-temperature, high-pressure, and corrosive media applications. Its chemical composition design is reasonable, mechanical properties are excellent, processability and weldability are good, and it has broad application prospects. NS113 alloy steel will play a more important role in the field of high-temperature, high-pressure, and corrosive media in the future.