Physical Properties of Nitronic 33 (0Cr18Ni3Mn13N) Austenitic Stainless Steel
Austenitic stainless steels are by far the most commonly used type of stainless steel and are known for their excellent corrosion resistance, strength and ductility. Nitronic 33 (0Cr18Ni3Mn13N) is a type of austenitic stainless steel that contains chromium, nickel, molybdenum, and nitrogen as its key alloying elements. It has excellent resistance to aqueous corrosion and high mechanical strength, making it an ideal material for many applications.
Nitronic 33 (0Cr18Ni3Mn13N) is known to have a higher resistance to chloride pitting corrosion than conventional stainless steels due to its higher alloying levels. This improved corrosion resistance is attributed to nitrogen, which acts as a “passivation” layer on the material’s surface, preventing oxygen from attacking the material and degrading it. Nitronic 33 also offers improved stress-corrosion cracking resistance as compared to standard austenitic stainless steels.
In terms of its mechanical properties, Nitronic 33 (0Cr18Ni3Mn13N) is a relatively strong material, possessing a minimum tensile strength of 850 MPa and 0.2% proof strength of 735 MPa. It shows excellent resistance to abrasive wear and fatigue, making it suitable for applications that involve high impact and wear and tear. Additionally, it has good thermal conductivity and excellent weldability, making it suitable for a variety of engineering designs.
Nitronic 33 (0Cr18Ni3Mn13N) is a relatively lightweight material, with a density of 7.87 g/cm3. It can be formed in various shapes, such as plates, bars, and sheets and is often used for corrosion-resistant components. It is also commonly used for fasteners, and can be used in applications that involve chemical or high-temperature environments. Additionally, due to its excellent corrosion resistance, it is an ideal material for marine and aerospace applications as well as medical and food-grade equipment.
Nitronic 33 (0Cr18Ni3Mn13N) is an austenitic stainless steel that is suitable for a variety of applications due to its high strength and excellent corrosion resistance. It has high resistance to pitting and stress-corrosion cracking and is relatively lightweight with good thermal conductivity and weldability. It is often used for components in corrosive or high-temperature environments, such as fasteners and marine and aerospace applications, as well as for medical and food-grade equipment.