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Stainless Steel 321 bars are efficient anti-corrosion parts with perfect stability and strength at elevated temperatures. They are usually used in aerospace, chemical processing, and thermal power plant Industries, where rigorous oxidation and creep resistance are compulsory.
The composition of Stainless steel 321 bars is crucial for understanding their properties and performance in various industrial applications.
Grade | C | Mn | Si | P | S | Cr | Ni | Ti | N |
321 | 0.08 max. | 2.00 max. | 0.75 max. | 0.045 max. | 0.03 max. | 17.0 – 19.0 | 9.0-12.0 | 5 x (C+N) min. | 0.1 |
Thus, this table provides valuable insights into the chemical composition of these flanges, highlighting their properties and suitability.
The table provides essential information for engineers and manufacturers to assess the integrity and durability of Stainless steel 321 bars in demanding environments.
Density | Melting Point | Tensile Strength | Yield Strength (0.2%Offset) | Elongation |
8.0 g/cm3 | 1457 °C (2650 °F) | Psi – 75000 , MPa – 515 | Psi – 30000 , MPa – 205 | 35 % |
Thus, this valuable data on the strength, ductility, and resilience of stainless steel 321 bars is crucial for ensuring reliability and longevity.
These are flexible flanges which offer numerous benefits for various industrial applications, which are as follows:
Stainless steel 321 Bars offer several advantages that make them suitable for industrial and commercial piping applications.
Due to their excellent features, Stainless Steel 321 bars are preferred in various industrial applications. Some of the main applications include
Stainless steel can effectively resist damage by corrosive chemicals, even at higher temperatures.
Stainless Steel 321 bars are efficient anti-corrosion parts with perfect stability and strength at elevated temperatures. They are usually used in aerospace, chemical processing, and thermal power plant Industries, where rigorous oxidation and creep resistance are compulsory.
The composition of Stainless steel 321 bars is crucial for understanding their properties and performance in various industrial applications.
Grade | C | Mn | Si | P | S | Cr | Ni | Ti | N |
321 | 0.08 max. | 2.00 max. | 0.75 max. | 0.045 max. | 0.03 max. | 17.0 – 19.0 | 9.0-12.0 | 5 x (C+N) min. | 0.1 |
Thus, this table provides valuable insights into the chemical composition of these flanges, highlighting their properties and suitability.
The table provides essential information for engineers and manufacturers to assess the integrity and durability of Stainless steel 321 bars in demanding environments.
Density | Melting Point | Tensile Strength | Yield Strength (0.2%Offset) | Elongation |
8.0 g/cm3 | 1457 °C (2650 °F) | Psi – 75000 , MPa – 515 | Psi – 30000 , MPa – 205 | 35 % |
Thus, this valuable data on the strength, ductility, and resilience of stainless steel 321 bars is crucial for ensuring reliability and longevity.
These are flexible flanges which offer numerous benefits for various industrial applications, which are as follows:
Stainless steel 321 Bars offer several advantages that make them suitable for industrial and commercial piping applications.
Due to their excellent features, Stainless Steel 321 bars are preferred in various industrial applications. Some of the main applications include
Stainless steel can effectively resist damage by corrosive chemicals, even at higher temperatures.
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Stainless Steel 321 Bars Price Start From Rs. 200/Kilogram To Rs. 250/Kilogram.
The components of 321 stainless steel bars include chromium, nickel, titanium, and carbon. Chromium is the most important element present in 321 SS bars and it provides the corrosion resistance properties which make these materials so versatile. Nickel helps to improve corrosion resistance and heat resistance, while titanium helps to strengthen the material against corrosion. Carbon is a key component as well as it forms carbides within the material to further improve its strength.
The best welding type for 321 stainless steel bars is Gas Tungsten Arc Welding(GTAW). This welding method offers excellent corrosion resistance, high tolerance levels, and good welding speeds. It can also be used to weld thicker material with lower heat input than other methods, making it a reliable option for use on stainless steel bars. Additionally, GTAW produces strong and consistent welds which are highly resistant to corrosion and cracking.
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