Introduction to Nickel-chromium alloy wire mesh Materials, Characteristics and Applications
Introduction to Nickel-chromium alloy wire mesh Materials, Characteristics and Applications
Nickel-chromium alloy wire mesh is also known as nickel-chromium alloy filter mesh, nickel-chromium alloy metal mesh, nickel-chromium alloy woven mesh, nickel-chromium alloy square hole mesh, nickel-chromium alloy screen, high temperature alloy wire mesh, etc.
Types of nickel-chromium alloy wire mesh: nickel-chromium alloy welded mesh, nickel-chromium alloy mesh belt, nickel-chromium alloy crimped mesh, nickel-chromium alloy punching plate, nickel-chromium alloy hexagonal mesh, nickel-chromium alloy protective mesh, nickel-chromium alloy knitted mesh/knitted metal wire mesh, nickel-chromium alloy wire mesh demister, nickel-chromium alloy wire mesh corrugated packing, nickel-chromium alloy crimped mesh, nickel-chromium alloy square hole screen, nickel-chromium alloy filter, nickel-chromium alloy diamond mesh, nickel-chromium alloy ore screen, nickel-chromium alloy filter, etc.
The common grades of Nickel-Chromium alloys are 0Cr20Ni80, 0Cr30Ni70, 0Cr15Ni60, 0Cr20Ni35, 0Cr20Ni30.
1. 0Cr20Ni80
0Cr20Ni80 contains 20% Cr and 80% Ni, which has strong corrosion resistance. The allowable operating temperature of the alloy is 1200 ° C. 0Cr20Ni80 has the advantages of good oxygen resistance, high strength, non-magnetic, high emissivity, good corrosion resistance, no softening, no deformation, and low permanent elongation.
2. 0Cr30Ni70
Cr30Ni70 high hardness stainless steel is a Invar alloy with low creep fracture resistance developed in Sweden. Its solution treatment temperature is about 1267 degrees, and the structure has 21%-61% ferrite and 61%-54% carbonization resistance and stability, which has the common characteristics of the var alloy. It is a feature with carbon resistance and low price. Duplex stainless steel developed to replace 2507 and S48140 commonly used duplex stainless steel with anti-sensitization properties.
Cr30Ni70 features: nickel-chromium, nickel-chromium ferroelectric alloy wire has high temperature oxidation resistance, high strength, no softening and a series of advantages. When used for a long time, it does not deform and has a small permanent elongation, among which Cr30Ni70 alloy has excellent comprehensive characteristics, and is the first choice for making high-quality electric heating elements. The products are widely used in industrial electric furnace, metallurgy, machinery, household appliances and other industries to make heating elements and resistance elements.
3. 0Cr15Ni60
60Ni-15Cr has high nickel and chromium content, less iron content, and has good oxidation resistance, thermal strength and positive temperature coefficient below 900 ° C. At room temperature, it has high plasticity, cold stamping and welding performance. After solid solution treatment, the alloy is single-phase austenite, and the tissue is stable during use. The Cr15Ni60 alloy has a single-phase austenite structure.
4. 0Cr20Ni35
35Ni-20Cr has high nickel and chromium content, high silicon content, and has good oxidation resistance, thermal strength and high positive temperature coefficient below 800 ℃. At room temperature, it has high plasticity, cold stamping and welding performance. After solid solution treatment, the alloy is single-phase austenite, and the tissue is stable during use.
Nichrome wire mesh is made of the nichrome wire. Nichrome wire mesh has outstanding ductility, high tensile strength, oxidation resistance, sulfur resistance and other features.
Nichrome wire mesh has a wide range of applications, including the aerospace, shipbuilding, military industry, chemical and other fields.
Nichrome wire mesh has outstanding oxidation and sulfur resistance.
Features of Nichrome Wire Mesh:Nichrome wire mesh has following features: Good ductility. High tensile strength. Oxidation resistance. Sulfur resistance. Permeability resistance. Superior elongation. Non-magnetic. High temperature resistance.
Grades | Chemical Composition, % | ||
Ni | Cr | Fe | |
0Cr20Ni80 | Remainder | 20.0-23.0 | 1.0 max. |
0Cr30Ni70 | Remainder | 28.0-31.0 | 1.0 max. |
0Cr15Ni60 | 55.0-61.0 | 15.0-18.0 | Remainder |
0Cr20Ni35 | 34.0-37.0 | 18.0-21.0 | Remainder |
0Cr20Ni30 | 30.0-34.0 | 18.0-21.0 | Remainder |
Grades | Maximum usable temperature | Melting point | Density | Electrical resistivity | Ductility | Specific heat | Heat conductivity coefficient | Expansion coefficient | Microscopic structure | Magnetism |
℃ | ℃ | g/cm3 | μΩ•n, 20℃ | % | J/g.℃ | KJ/m.h℃ | a×10-6/℃ (20-1000℃) | |||
0Cr20Ni80 | 1200 | 1400 | 8.40 | 1.09±0.06 | 20 min. | 0.440 | 60.3 | 18.0 | austenite | Non- magnetic |
0Cr30Ni70 | 1250 | 1380 | 8.10 | 1.18±0.05 | 20 min. | 0.461 | 45.2 | 17.0 | austenite | Non- magnetic |
0Cr15Ni60 | 1150 | 1390 | 8.20 | 1.11±0.05 | 20 min. | 0.494 | 45.2 | 17.0 | austenite | Non- magnetic |
0Cr20Ni35 | 1100 | 1390 | 7.90 | 1.04±0.05 | 20 min. | 0.500 | 43.8 | 19.0 | austenite | Non- magnetic |
0Cr20Ni30 | 1100 | 1390 | 7.90 | 1.04±0.06 | 20 min. | 0.500 | 43.8 | 19.0 | austenite | Non- magnetic |
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