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3 days ago · Type 321 is a stabilized stainless steel which offers as its main advantage an excellent resistance to intergranular corrosion following exposure to temperatures in the chromium carbide precipitation range from 800 to 1500° F (427 to 816° C).
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aisi 321 stainless steel properties 316 stainless steel properties 321 stainless steel machinability 304 stainless steel properties 2 days ago · This grade of stainless steel primarily comprises 16-18% chromium, 10-14% nickel, and 2-3% molybdenum. The inclusion of molybdenum significantly enhances its resistance to corrosion, particularly against chlorides and acidic substances commonly found in marine environments and certain industrial chemicals. 316 Stainless Steel Properties
2 days ago · The most prevalent type, with a hardness range of approximately 150-300HB. Ideal for manufacturing high-strength mechanical components. The highest hardness levels for austenitic stainless steel are around HRC38-39. Specific hardness values for different grades: 304 stainless steel: HB≤187. 316 stainless steel: HB≤187.
23 hours ago · Stainless steel, also known as inox, corrosion-resistant steel (CRES), and rustless steel, is an alloy of iron that is resistant to rusting and corrosion. It contains iron with chromium and other elements such as molybdenum, carbon, nickel and nitrogen depending on its specific use and cost. Stainless steel's resistance to corrosion results ...
3 days ago · In type 321 stainless steel, Titanium is added (typically 0.5% to 1%) to stabilize the alloy. Titanium binds with carbon to form Titanium carbides, which prevent the formation of Chromium carbides. This helps maintain the high temperature corrosion resistance of the steel, and improves the material’s weldability.
1 day ago · 12.5~13.2. YT14 Tungsten Steel. 11.2~12. YT30 Tungsten Steel. 9.3~9.7. YN10 Hard Alloy Steel. ≥6.3. Explore our comprehensive reference table showcasing the densities of common metals and alloy materials.
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2 days ago · Microalloying and heat treatment are essential processing techniques for ferritic stainless steel (FSS). Three different compositions of 21%Cr FSS with 0.28Ti, 0.21Ti + 0.05Nb, and 1.05Ti + 0.17Nb were prepared. The interaction effects of the Nb and Ti contents and hot-rolling annealing on the microstructure, mechanical properties, and precipitate phases of FSS were studied. The microstructure ...