Table Of Content
Nickel 201 Bars. The low-carbon variant of nickel 200 is nickel 201. Nickel 201 is not vulnerable to embrittlement from intergranular precipitated carbon or graphite when subjected to temperatures of 315 to 760°C over an extended period because of its low carbon content. Therefore, in applications above 315°C, nickel 201 can replace nickel 200. However, at temperatures higher than 315 °C, sulfur compounds also cause intergranular embrittlement in nickel 200. They can be converted to sulfates using sodium peroxide to counteract their effects.
It has other properties, including high tensile strength, formability, and weldability. Products manufactured using Nickel 201 Rod contain 99.96% pure nickel. The Nickel 201 Bar is utilized in various processing machinery, but it is especially crucial for maintaining product purity when working with foodstuffs, alkaline solutions, and synthetic materials.
Nickel 200 Wire demonstrates low electrical conductivity and is perceived as impervious to several oxidation conditions. It is safe at higher temperature ranges with efficient heat resistance. It has an inactive layer to oppose oxidation and other different corrosive surroundings. The composite Nickel 200 Bars have a large portion of the nickel content; however, they balance out just barely of carbon and chromium. It has a long life, sturdiness, impervious fatigue consumption, excellent thermal stability, and a pitting-safe appearance.
Nickel 200 Bars are intended for exceptionally corrosive systems. It can oppose consumption from rough water, salty climate, and sludge. Its mechanical strength makes it reasonable for streaming water systems. Nickel 201 Bars are nickel-based compounds with chromium with molybdenum in stable addition for fantastic sturdiness. It opposes crevice decay, scraped spot, disintegration, stress erosion, and pitting, and its high rigidity make it ideal for long-lasting quality.
Nickel 200 is available in 201 Wire Mesh, the low-carbon version. Both nickel 200 and nickel 201 wire mesh have superior mechanical properties. With a high quality of nickel, Nickel 200 wire mesh provides reasonable automatic rates and flexibility. It possesses excellent electrical and thermal conductivity, magnetostrictive characteristics, and the ability to withstand high temperatures and corrosion. Nickel 201 Wire is primarily used for its superior corrosion resistance.
Specifications | ASTM B160 / ASME SB160 |
Standards | DIN, ASTM, ASME, BS and all International Standards |
Dimensions | EN, DIN, JIS, ASTM, BS, ASME, AISI |
Diameter | Outside Diameter in the range of 4mm to 500mm |
Width | 1m to 48″ |
Hex Bars | 18mm – 57mm (11/16″ to 2-3/4″) |
Square Bars | 18mm – 47mm (11/16″ to 1-3/4″) |
Flat Bars | 1/2” to 10” in the thickness range of 2mm to 150mm |
Wire Length | Max 12000 mm |
Wire Mesh Length | 30m to 100″ |
Wire Diameter | 5.5 – 400 mm |
Length | 1 to 6 Meters, Custom Cut Lengths |
Form | Round, Square, Hex (A/F), Rectangle, Billet, Ingot, Forging, Wire Mesh, Hexagonal Wiremesh, Welding Wiremesh, Netting Wiremesh, Woven Wiremesh, Spring Steel wire mesh, Square Wiremesh Etc |
STANDARD | WERKSTOFF NR. | UNS | JIS | BS | GOST | AFNOR | EN |
Nickel 200 | 2.4066 | N02200 | NW 2200 | NA 11 | НП-2 | N-100M | Ni 99.2 |
Nickel 201 | 2.4068 | N02201 | NW 2201 | NA 12 | НП-2 | – | LC-Ni 99 |
Grade | C | Mn | Si | S | Cu | Fe | Ni |
Nickel 200 | 0.15 max | 0.35 max | 0.35 max | 0.01 max | 0.25 max | 0.40 max | 99.0 min |
Nickel 201 | 0.02 max | 0.35 max | 0.35 max | 0.01 max | 0.25 max | 0.40 max | 99.0 min |
Element | Density | Melting Point | Tensile Strength | Yield Strength (0.2%Offset) | Elongation |
Nickel 200 / 201 | 8.9 g/cm3 | 1446 °C (2635 °F) | Psi – 67000 , MPa – 462 | Psi – 21500 , MPa – 148 | 45 % |
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