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Polishing High Performance WNiFe Tungsten Heavy Metal Rod

Categories Tungsten Heavy Alloy
Brand Name: JINXING
Model Number: WNiFe - Tungsten Heavy Alloy Rod
Certification: ISO 9001
Place of Origin: CHINA
MOQ: 10 kg
Price: Negotiable
Payment Terms: L/C, T/T, D/P, Western Union
Supply Ability: 2000 kg per month
Delivery Time: 15-20 days
Packaging Details: plywood cases
Product Name: WNiFe Tungsten Heavy Alloy Rod
Types: WNiFe
Density: 16.5-18.5 g/cc
Purity: 95% W
Tensile Strength: 770-1400 MPa
Elongation: <9%
Standard: ASTM B777-2010
Applications: aerospace
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Polishing High Performance WNiFe Tungsten Heavy Metal Rod

Polishing High Performance WNiFe Tungsten Heavy Alloy Rod

WNiFe Tungsten Heavy Alloy Rod has high density, high strength High hardness (affectionately known as 3H alloy) and good comprehensive excellent properties such as ductility, conductivity and thermal conductivity play an important role in weapon manufacturing, and then have been widely used in national defense industry, aerospace and civil industry (such as electrical industry and drilling industry). High specific gravity tungsten alloy material has become a kind of military and civil alloy material.


SPECIFICATION & CHEMICAL COMPOSITIONS (NOMINALS)

Chemical Composition90%W93%W95%W97%W
StateSinterVacuumForgeSinterVacuumForgeSinterVacuumSinterVacuum
Density
(g/cc)
16.85-17.2517.15-17.8517.75-18.3518.25- 18.85
Hardness
(HRC)
32 Max30 Max40 Min33 Max31 Max40 Min34 Max32 Max35 Max33 Max
Tensile Strength (Max)770 Min900 Min1400
Max
770 Min910 Min1440 Max735 Min920 Min700 Min850 Min
Yield Strength
(Mpa)
620 Min620 Min1280 Max650 Min650 Min1340 Max650 Min650 Min--
Elongation
(%)
5 Min15 Min5 Min5 Min12 Min3 Min3 Min12 Min2 Min6 Min

WNiFe Tungsten Heavy Alloy Rod Picture:


Introduction and characteristics of WNiFe Tungsten Heavy Alloy Rod

The tungsten content in tungsten heavy alloys ranges from 90% to 98%, which is the reason for their high density (16.5 to 19.00g/cc). Nickel, iron and / or copper are used as metal binder matrix to fix brittle tungsten particles together, making tungsten alloys ductile and easy to process. Ferronickel is the most commonly used additive in the proportion of 7Ni: 3Fe or 8ni: 2Fe (weight ratio).


Common processes for preparing tungsten heavy alloys include mixing the required amount of tungsten, iron, nickel or copper powder, and then cold pressing and liquid phase sintering to almost full density. In the process of liquid phase treatment, the matrix tungsten alloy melts, some tungsten is brought into the solution to form microstructure, and large tungsten particles (20 – 60 µ m) are dispersed in the matrix alloy through this microstructure.


Application of WNiFe Tungsten Heavy Alloy Rod

In the design and development of shelled armor piercing projectiles abroad, in order to increase the kinetic energy of the core and improve the armor piercing ability, the application of high specific gravity tungsten alloy is an effective technical measure. Foreign countries attach great importance to it. It began to be developed in the early 1970s and put into use in a short time. At present, in addition to the use of high specific gravity tungsten alloy core materials in the United States, many Western European countries also use them accordingly.

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