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00Cr19Ni10 stainless steel wire mesh Introduction to Characteristics and Applications

2024-07-29 16:22:27 wiremeshxr

00Cr19Ni10 stainless steel wire mesh Introduction to Characteristics and Applications

00Cr19Ni10 stainless steel wire mesh is also known as 00Cr19Ni10 filter mesh, 00Cr19Ni10 woven mesh, 00Cr19Ni10 screen mesh, 00Cr19Ni10 stainless steel mesh, 00Cr19Ni10 metal mesh, 00Cr19Ni10 square hole mesh, etc.

Filter models: GFW, GF1W, GF2W, GF3W;
Implementation standards: GB/T5330-2003, GB/T5330-1985, GB/T5330-2000, HB1862.
00Cr19Ni10 is a steel with lower carbon content than 0Cr19Ni9. It has excellent resistance to intergranular corrosion and can be used as parts that do not require heat treatment after welding. "0" means the carbon content is less than 0.1%, and "00" means the carbon content is less than 0.03%.
Stainless steel 00Cr19Ni10 has a lower carbon content than 0Cr19Ni9, has excellent resistance to intergranular corrosion, and can be used as parts that do not require heat treatment after welding.
Stainless steel 00Cr19Ni10 is equivalent to ASME material 304L
Steel that is resistant to corrosion by weak corrosive media such as air, steam, and water, and chemically corrosive media such as acids, alkalis, and salts. Also known as stainless acid-resistant steel. In practical applications, steel that is resistant to corrosion by weak corrosive media is often called stainless steel, while steel that is resistant to corrosion by chemical media is called acid-resistant steel. Due to the difference in chemical composition between the two, the former is not necessarily resistant to corrosion by chemical media, while the latter is generally stainless. The corrosion resistance of stainless steel depends on the alloying elements contained in the steel. Chromium is the basic element that makes stainless steel corrosion-resistant. When the chromium content in steel reaches about 12%, chromium reacts with oxygen in the corrosive medium to form a very thin oxide film (self-passivation film) on the surface of the steel, which can prevent further corrosion of the steel matrix. In addition to chromium, commonly used alloying elements include nickel, molybdenum, titanium, niobium, copper, nitrogen, etc., to meet the requirements of stainless steel organization and performance for various uses.
It will cause corrosion, pitting, rust or wear. Stainless steel is also one of the strongest materials in construction metal materials. Because stainless steel has good corrosion resistance, it can make structural components permanently maintain the integrity of engineering design. Chromium-containing stainless steel also combines mechanical strength and high elongation, and is easy to process and manufacture components to meet the needs of architects and structural designers.


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