Pure Nickel Strip Ni200 /201 for Lithium Battery 99.6%
Nickel 201 is a low carbon variety compared with Nickel 200, possessing low annealed hardness and a very low work-hardening rate, desirable for cold forming operations. It is highly resistant to corrosion by neutral and alkaline salt solutions, fluorine and chlorine, but in oxidising salt solutions severe attack will occur.
The applications of pure nickel includes food and synthetic fiber processing equipment, electronic parts, aerospace and missile components, handling of sodium hydroxide above 300ºC.
1.Product Description
Ni 200 is a 99.6% pure wrought nickel alloy. Sold under the brand names Nickel Alloy Ni-200, Commercially Pure Nickel, and Low Alloy Nickel, Ni 200 offers users a wide range of benefits including its primary component, nickel. Nickel is one of the world’s toughest metals and imparts a number of advantages to this material. Ni 200 has excellent resistance to most corrosive and caustic environments, media, alkalis, and acids (sulfuric, hydrochloric, hydrofluoric). Used both in and outdoors, Ni 200 also has:
Unique magnetic and magnetostrictive properties
High thermal and electrical conductivities
Low gas content
Low vapor pressure
Many different industries utilize Ni 200, but it is especially useful to those who are looking to maintain the purity of their products. This includes:
Food handling
Manufacturing synthetic fibers
Caustic alkalis
Structural application that demand corrosion resistance
Ni 200 can be hot rolled into practically any shape, and it also responds well cold forming, and machining, as long as established practices are followed. It is also accepts most conventional welding, brazing, and soldering processes.
While Ni 200 is made almost exclusively from nickel (at least 99%), it also contains trace amounts of other chemical elements including:
Fe .40% max
Mn .35% max
Si .35% max
Cu .25% max
C .15% max
2. Other Information
Nickel and its alloys are frequently used as catalysts for hydrogenation reactions. Raney nickel, a finely divided nickel-aluminium alloy, is one common form, though related catalysts are also used, including Raney-type catalysts.
Pure nickel wire production cycle: 3 to 7 days or so
State: hard /half hard/soft
If you are interested, Please do not hesitate to contact us for detailed information.
Chemical Composition
Alloy | Ni% | Mn% | Fe% | Si% | Cu% | C% | S% |
Nickel 201 | Min 99 | Max 0.35 | Max 0.4 | Max 0.35 | Max 0.25 | Max 0.02 | Max 0.01 |
Physical Data
Density | 8.9g/cm3 |
Specific Heat | 0.109(456 J/kg.ºC) |
Electrical Resistivity | 0.085×10-6ohm.m |
Melting Point | 1435-1445ºC |
Thermal Conductivity | 79.3 W/m-K |
Mean Coeff Thermal Expansion | 13.1×10-6m/m.ºC |
Typical Mechanical Properties
Mechanical Properties | Nickel 201 |
Tensile Strength | 403 Mpa |
Yield Strength | 103 Mpa |
Elongation | 50% |
Our Production Standard
Bar | Forging | Pipe | Sheet/Strip | Wire | |
ASTM | ASTM B160 | ASTM B564 | ASTM B161/B163/B725/B751 | AMS B162 | ASTM B166 |