Introduction to types, material grades and characteristics of stainless steel screens
Introduction to types, material grades and characteristics of stainless steel screens
Introduction to types, material grades and characteristics of stainless steel screens
Material: SUS302, 304, 316, 304L, 316L, 310, 310S and other stainless steel wires.
Weaving and characteristics: plain weave, twill weave, mat type dense weave, with acid resistance, alkali resistance, temperature resistance, wear resistance and other properties.
Usage: Used in mining, petroleum, chemical industry, food, medicine, machinery manufacturing and other industries.
Stainless steel screen mesh, also known as stainless steel wire mesh, includes stainless steel square mesh and stainless steel twill mesh.
Stainless steel screens are resistant to wear, heat, acid, and corrosion. Due to these properties, stainless steel screens are used in many fields such as mining, chemical industry, food industry, and pharmaceutical industry.
Introduction to the types, grades, characteristics and uses of stainless steel wires used for various stainless steel woven screens:
1 1Cr17Mn6Ni5N (201) Nickel-saving steel type, replacing the grade 1Cr17Ni7, which is magnetic after cold processing. For railway vehicles.
2 1Cr18Mn8Ni5N (202) Nickel-free steel type, replacing the grade 1Cr18Ni9
3 1Cr17Ni7 (301) It has high strength after cold working. Railway vehicles, conveyor belts, bolts and nuts
4 1Cr18Ni9 (302) has high strength after cold working, but the elongation is slightly worse than 1Cr17Ni7. Decorative components for construction.
5 Y1Cr18Ni9 (303) improves cutting and ablation resistance. Most suitable for automatic lathes. Bolts and nuts
6 Y1Cr18Ni9Se (303Se) improves cutting and ablation resistance. Most suitable for automatic lathes. Rivets and screws
7 0Cr19Ni9 (304) is the most widely used stainless heat-resistant steel in food equipment, general chemical equipment, and atomic energy industry.
8 00Cr19Ni10 (304L) is a steel with a lower carbon content than 0Cr19Ni9 and has superior resistance to intergranular corrosion. Parts that are not heat treated after welding are Category
9 0Cr19Ni9N (304N1) Adding N to the grade 0Cr19Ni9 increases the strength without reducing the plasticity. Reduce the thickness of the material. As a structural strength component
10 0Cr19Ni10NbN (304N2) Add N and Nb to the grade 0Cr19Ni9, which has the same characteristics and uses
as 0Cr19Ni9N. 11 00Cr18Ni10N (304LN) Add N to the grade 00Cr19Ni11, which has the same characteristics as the above grades and has the same purpose as 0Cr19Ni9N. But the resistance to intergranular corrosion is
better12 1Cr18Ni12 (305) has better work hardening properties than 0Cr19Ni9. Spinning processing, special drawing, cold heading
13 0Cr23Ni13 (309S) has better corrosion resistance and heat resistance than 0Cr19Ni9.
14 0Cr25Ni20 (310S) has better oxidation resistance than 0Cr23Ni13. In fact, 15 0Cr17Ni12Mo2 (316) is mostly used as heat-resistant steel
. In seawater and other various media, its corrosion resistance is better than 0Cr19Ni9. Mainly used as pitting corrosion resistant material
16 0Cr18Ni12Mo2Ti (316Ti) Used for equipment resistant to sulfuric acid, phosphoric acid, formic acid, acetic acid, has good resistance to intergranular corrosion
17 00Cr17Ni14Mo2 (316L) is an ultra-low carbon steel of 0Cr17Ni12Mo2, more resistant to intergranular corrosion than 0Cr17Ni12Mo2 Good corrosiveness
18 0Cr17Ni12Mo2N (316N) adds N to the grade 0Cr17Ni12Mo2 to increase the strength without reducing the plasticity and thinning the material thickness. Used as high-strength components with good corrosion resistance
19 00Cr17Ni13Mo2N (316LN) adds N to the brand 00Cr17Ni14Mo2, which has the same characteristics as the above brands and has the same use as 0Cr17Ni12Mo2, but has better crystal corrosion resistance
20 0Cr18Ni12Mo2Cu2 (316JI) Corrosion resistance , The pitting corrosion resistance is better than 0Cr17Ni12Mo2. Used for sulfuric acid-resistant materials
21 00Cr18Ni14Mo2Cu2 (316JIL) is an ultra-low carbon steel of 0Cr18Ni12Mo2Cu2, which has better intergranular corrosion resistance than 0Cr18Ni12Mo2Cu2
. 22 0Cr19Ni13Mo3 (317) has better pitting corrosion resistance than 0Cr17Ni12Mo2. Used as dyeing equipment materials, etc.
23 00Cr19Ni13Mo3 (317L) is an ultra-low carbon steel of 0Cr19Ni13Mo3, which has better resistance to intergranular corrosion than 0Cr19Ni13Mo3
24 0Cr18Ni16Mo5 (317L) Heat exchangers that absorb chloride-containing solutions, acetic acid equipment, phosphoric acid equipment, bleaching devices, etc., used in environments where 00Cr17Ni14Mo2 and 00Cr17Ni13Mo3 are not applicable.
25 1Cr18Ni9Ti (321) Used as welding blankets, antimagnetic instruments, and medical equipment , acid-resistant containers and equipment lining transportation pipelines and other equipment and parts, add Ti to improve intergranular corrosion resistance, not recommended as decorative parts.
26 0Cr18Ni11Nb (347) Contains Nb to improve intergranular corrosion resistance
27 00Cr20Ni25Mo4.5Cu (904L) Super Austrian Astenitic stainless steel is a kind of austenitic stainless steel with very low carbon content and high alloying designed for environments with harsh corrosion conditions. It has high resistance to pitting corrosion.
28 0Cr17Ni4Cu4Nb (630) is a martensitic precipitation hardening stainless steel. Its performance feature is that the strength level is easy to adjust, which can be adjusted by changing the heat treatment process. It has strong corrosion resistance, fatigue resistance and water drop resistance.
29 17-4HP (631) has the same performance as 630 stainless steel. It is a martensitic precipitation hardening stainless steel. Its performance feature is that the strength level is easy to adjust, which can be adjusted by changing the heat treatment process. Resistance to corrosion fatigue and water droplets is stronger than 630
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