UNS S32760 Super Duplex Stainless Steel Chemical Composition, Grades, Charts and Online Pdf

UNS S32760, chemically speaking, is the main feature of Super Duplex Stainless Steel used extensively in many industries including the chemical. Comprising of chromium, nickel, molybdenum and nitrogen, its chemical formula (Fe + C) announces its resistance to corrosion, especially in marine settings and chemical processing zones. As part of its duplex structure, it gathers the top working traits of both austenitic and ferritic carbon steel, providing sufficient strength and ductility at the same time. Through this grade's charts and browsing online, in-depth understanding of the properties of the grade is offered that guides engineers, designers, and manufacturers in selecting the correct material for application. The accessible PDF documents, which can be obtained through direct resource links, provide elaborate information concerning its mechanical properties, chemical composition, and recommended application in engineering projects thus making it easy to make an informed decision.

UNS S32760 Super Duplex Stainless Steel Chemical Composition And Grade Table

UNS S32760 is a super high performance and super duplex stainless steel that is well-known for its excellent corrosion resistance while maintaining superior mechanical properties. The ASTM A760 stainless steel material is made of chromium, molybdenum, and nitrogen and, therefore, has high resistance to stress corrosion cracking, pitting, crevice corrosion, marine environments. Its basic constituents amount to 25% chromium, 7% nickel, 3.6% molybdenum and 0.25% nitrogen, and these are supplemented by much smaller proportions of copper and tungsten, for instance. Labeled with S32760 under the UNS designation, it is widely speculated that this grade is employed for many challenging applications in the offshore oil and gas, chemical processing and marine industries.

UNS S32760 Super Duplex Stainless Steel
Elements C Mn Si S P Cr Ni Mo Cu N W
Min (%) - - - - - 24 6 3 0.50 0.20 0.50
Max (%) 0.03 1.00 1.00 0.015 0.035 26 8 4 1 0.3 1

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