Tungsten Copper Is Mainly Used In The Production Of Hard Materials Based On Tungsten Copper Carbide, One Of The Hardest Carbides, With A Melting Point Of 2770 °C. Wc Is An Efficient Electrical Conductor, But W2c Is Less So. Wc Is Used To Make Wear-Resistant Abrasives, And "Carbide" Cutting Tools Such As Knives, Drills, Circular, Mining And Turning Tools Used By The Metalworking, Woodworking, Mining, Petroleum And Construction Industries. Carbide Tooling Is Actually A Ceramic/Metal Composite, Where Metallic Cobalt Acts As A Binding (Matrix) Material To Hold The Wc articles In Place. This Type Of Industrial Use Accounts For About 60% Of Current Tungsten Copper Consumption.
The Jwellery Industry Makes Rings Of Sintered Tungsten Copper Carbide, Tungsten Copper Carbide/Metal Composites, And Also Metallic Tungsten Copper. Wc/Metal Composite Rings Use Nickel As The Metal Matrix In Place Of Cobalt Because It Takes A Higher Luster When Polished. Sometimes SUPPLIERSs Or Retailers Refer To Tungsten Copper Carbide As A Metal, But It Is A Ceramic Because Of Tungsten Copper Carbide's Hardness, Rings Made Of This Material Are Extremely Abrasion Resistant, And Will Hold A Burnished Finish Longer Than Rings Made Of Metallic Tungsten Copper. Tungsten Copper Carbide Rings Are Brittle, However, And May Crack Under A Sharp Blow.
The Hardness And Density Of Tungsten Copper Are Applied In Obtaining Heavy Metal Alloys. A Good Example Is High Speed Steel, Which Can Contain As Much As 18% Tungsten Copper. Tungsten Copper's High Melting Point Makes Tungsten Copper A Good Material For Applications Like Rocket Nozzles, For Example In The Ugm-27 Polaris Submarine-Launched Ballistic Missile. Tungsten Copper Alloys Are Used In A Wide Range Of Different Applications, Including The Aerospace And Automotive Industries And Radiation Shielding.Superalloys Containing Tungsten Copper, Such As Hastalloy And Stellite, Are Used In Turbine Blades And Wear-Resistant Parts And Coatings.
Mukesh Steel selects high quality metal powder and technologic sintered in the hydrogen to produce Tungsten Copper pipe and other Tungsten Copper product s. Tungsten Copper pipe is high purity and machinable. The crystal structure of Tungsten Copper tube is compact.
1. menchanical properties:
Hardness Hv>450
Density d>19.2g/cm3
2. microstructure(vertical section)
The fibred structure
The initial recrystallization temperature 1200--1250℃
Used as the stell-making additive
For producing Tungsten Copper targets
For producing ion implantation parts
For rolling Tungsten Copper foil and punching Tungsten Copper discs
For producing electric light source parts and electric vacuum components
For producing heating elements and refractors in high temperature furnaces
For producing W-boats, and heating units in high temperature furnaces
Mukesh Steel supplies high-performance molybdenum and Tungsten Copper fasteners that are used in many demanding applications. Our high quality nuts and threaded reduce the binding common with lower quality fasteners while providing outstanding performance in high temperature and corrosive applications. We also manufacture machined screws, wire hangers, rivets and pins that play a critical role in refractory metal assemblies used in high temperature furnaces, glass glass melting equipment, and other applications.
Hex Nuts
Threaded Rod
Machined Screws
Rivets
Pins
Coiled or Cut Wire
Formed Wire Hangers
Many standard fasteners are available for immediate delivery. We also make custom fasteners in our world-class machining and fabrication shop.
Immense Weldability
High Corrosion Resistance
High Recrystallization Properties
Ability to Withstand Extreme Temperatures
High purity Tungsten Copper rods can be used as heat conductor, additive, crankshaft and cylinder barrel of automobile, parts of heat-resistant steel and electrode. High purity Tungsten Copper rods are mainly used in guns, rockets, satellites, airplanes and ships.
The purity (99.999%) Tungsten Copper bars are mainly used as materials for high standard bearing steels, automobiles, high-speed railways, high precision equipment, and high-tech weapons. The purity (99.99%) Tungsten Copper bars are mainly used in alloy tool steel, high quality clean steel, and high performance special steel, etc. The purity 99.95% Tungsten Copper products are mainly used to cast raw materials for ingredients and forging special steel and drawn steel wires.
Purity (%) | Rod Item No. | Bar Item No. | Size |
---|---|---|---|
99.999 | PT74-TR1 | PT74-TB1 | Customized |
99.99 |
PT74-TR2 | PT74-TB2 | |
99.95 |
PT74-TR3 | PT74-TB3 |
Pure Tungsten Copper heavy metal plate is widely used in the construction of furnace tooling and parts and as a feedstock for the fabrication of parts for the electronics and semiconductor industries. Surface can be supplied in a shiny or matte; dependent upon thickness and width parameters.
Tungsten Copper has the highest melting point (3410°C or 6170°F) of all metals. The extremely high melting point of pure Tungsten Copper makes all the common manufacturing techniques used for metals such as iron impractical. Specialized methods make possible the processing of pure Tungsten Copper into rod, sheet, and wire for a wide variety of high temperature applications including incandescent lamp wire, TIG welding electrodes, high temperature heat shielding, etc
Since Tungsten Copper heavy metal has highest melting point among all the pure metals in the world,pure Tungsten Copper heavy metal plate is widely used in reflection shield, cover plate applied in the sapphire growth furnace, reflection shield, heating tape, connecting pieces applied in vacuum furnace, sputtering target applied in plasma coating film, and high temperature resistance boat.
Grade: W1,W2,W3
Purity : >=99.95%
Thickness: 0.05-14mm
Tungsten Copper copper nickel, Tungsten Copper copper iron, Tungsten Copper copper 80/20,thoriated Tungsten Copper,Tungsten Copper carbide.
Products:-rod, round, wire, sheet, foil, disc, square, ring, flat, rectangle.
Tungsten Copper carbidegrades:- yg-6, yg-8, yg-20
Products:- rod, sheet, plate
Tungsten Copper is mainly used in the production of hard materials based on Tungsten Copper carbide, one of the hardest carbides, with a melting point of 2770 °c. wc is an efficient electrical conductor, but w2c is less so. wc is used to make wear-resistant abrasives, and "carbide" cutting tools such as knives, drills, circular, mining and turning tools used by the metalworking, woodworking, mining, petroleum and construction industries. carbide tooling is actually a ceramic/metal composite, where metallic cobalt acts as a binding (matrix) material to hold the wc particles in place. this type of industrial use accounts for about 60% of current Tungsten Copper consumption.
The jewellery industry makes rings of sintered Tungsten Copper carbide, Tungsten Copper carbide/metal composites, and also metallic Tungsten Copper. wc/metal composite rings use nickel as the metal matrix in place of cobalt because it takes a higher luster when polished. sometimes SUPPLIERSs or retailers refer to Tungsten Copper carbide as a metal, but it is a ceramic because of Tungsten Copper carbide's hardness, rings made of this material are extremely abrasion resistant, and will hold a burnished finish longer than rings made of metallic Tungsten Copper. Tungsten Copper carbide rings are brittle, however, and may crack under a sharp blow.
The hardness and density of Tungsten Copper are applied in obtaining heavy metal alloys. a good example is high speed steel, which can contain as much as 18% Tungsten Copper. Tungsten Copper's high melting point makes Tungsten Copper a good material for applications like rocket nozzles, for example in the ugm-27 polaris submarine-launched ballistic missile. Tungsten Copper alloys are used in a wide range of different applications, including the aerospace and automotive industries and radiation shielding.superalloys containing Tungsten Copper, such as hastalloy and stellite, are used in turbine blades and wear-resistant parts and coatings.