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Comparing 316 and 304 Stainless Steel Mesh: Applications and Corrosion Resistance

Stainless steel mesh can be categorized into two main types based on the raw materials used: 316 stainless steel mesh and 304 stainless steel mesh. Each variant has its unique advantages and applications. 

Advantages of 316 stainless steel mesh: With a composition of 18% chromium, 12% nickel, and 2.5% molybdenum, 316 stainless steel mesh exhibits exceptional corrosion resistance and high-temperature strength. It is particularly suitable for harsh environments and surpasses other nickel stainless steels in performance, especially in saltwater, sulfur water, and corrosive industrial atmospheres. In industries such as pulp and paper making, 316 stainless steel mesh excels due to its resistance to marine corrosion.

 

Applications of 316 stainless steel mesh: The primary use of 316 stainless steel mesh is in screening and filtration under acidic and alkaline conditions. It finds extensive application in industries such as mining, chemicals, food processing, and pharmaceuticals.

 

Advantages of 304 stainless steel mesh: 304 stainless steel mesh boasts excellent corrosion resistance and intergranular corrosion resistance. In laboratory experiments, it has demonstrated robust resistance to corrosion, even at a concentration of 65%. It also showcases remarkable resistance to alkaline solutions, as well as most organic and inorganic acids.

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Applications of 304 stainless steel mesh: 304 stainless steel mesh is commonly utilized for screening and filtering purposes in acidic and alkaline environments. It finds usage in various industries, including mining, chemicals, food processing, pharmaceuticals, and coal cleaning plants. Its initial screening operations contribute to the efficient utilization of resources, environmental protection, and economic benefits for enterprises.

 

In summary, both 316 and 304 stainless steel meshes have their strengths and applications. The choice of the appropriate variant depends on the specific environmental conditions, corrosion resistance requirements, and industry-specific demands.


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