Application of Stainless Steel in Chemical Industry

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Application of Stainless Steel in Chemical Industry Stainless Steel is the ideal material choice for a wide range of chemical plant applications. One of the major success stories for 304/ 316 Stainless steel was the storage of dilute nitric acid as it could be used in thinner sections and must more robust than other materials. A stainless-steel filter and seamless pipe combination are a main stay of modern fluid system, it is also worth considering the benefits of stainless steel not only in the lines and units themselves, but as larger design consideration. Special grades of stainless have been developed to have greater corrosion resistance at a broad range of different temperatures. These are used in desalination plants, sewage plants etc. Stainless pipes and tubes exhibit superior corrosion resistant; heat resistance and low temperature properties & have been used as raw materials that can withstand harsh environments as seen in chemical industry. The chemical industry presents a unique set of challenges including cryogenic applications, elevated temperatures, highly corrosive environments, high pressure handling and the purity of final products. Features of Stainless steel in Chemical Industry •

Stainless Steel is Adaptable

To modify Equipment’s, tanks or structural elements, you can adapt stainless steel in ways that many other products cannot. For instance, it is relatively easy to work stainless steel welded pipe on-site, and retain leak-tests of a milibar per second or lower. •

Stainless steel Resists Everyday Corrosion

In any chemical companies you are probably dealing with acids and oxidizers in quantities that can damage many materials. The stainless provides the best overall resistance to a wide range of chemicals, either directly applied or spilled by accident. •

Stainless steel is Cryogenic Resistant

At cryogenic temperatures the tensile strengths of austenitic stainless steel are substantially higher than at ambient temperatures. They also maintain excellent toughness. Ferritic, martensitic and precipitation hardening steels should not be used at


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