• Tungsten Heavy Alloy Swaging Rod for Military
  • Tungsten Heavy Alloy Swaging Rod for Military

Tungsten Heavy Alloy Swaging Rod for Military

Application: Industrial, Medical, Military
Standard: GB, ASTM
Purity: 85%-97%
Alloy: Alloy
Shape: Round Bar
Type: Tungsten Bars
Customization:
Manufacturer/Factory & Trading Company
Gold Member Since 2018

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Heilongjiang, China
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Basic Info.

Model NO.
W-Ni-Co-Fe
Composition
W Content: 85-97%, W-Ni-Fe, W-Ni-Cu
Density
15.8-18.50 g/cm3
Surface
Grind State
Diameter
12mm-400mm
Length
Less Than 500mm
Transport Package
Export
Trademark
Satellite
Origin
Mudanjiang
HS Code
8101991000
Production Capacity
10ton/Year

Product Description

Tungsten Alloy Swaging Rod for Medical and Military

  Swaging greatly increases tungsten alloy rod's ultimate tensile strength. The ultimate tensile strength of regular tungsten alloy rod is 1050 MPa . However, after swaging, the ultimate tensile strength can reach 1200 MPa min, we can even control tungsten alloy military swaging rod at 1400 MPa. Tungsten alloy military swaging rod is one of our main products. The composition of tungsten alloy military swaging rod is 93%WNiFe.
  Tungsten Alloy Swaging Rod Main Properties for Military:
 
  High density
* High melting point
* Small volume
* Excellent hardness
* Superior wearing resistance
* High ultimate tensile strength
* High ductility
* High temperature resistance
* Low vapor pressure
Military Application of Tungsten Alloy Swaging Rod
Tungsten alloy swaging rod can be used in military defense, such as depleted uranium kinetic
energy penetrators, bullet, armor piercing, armor piercing bullets, sniper rifle penetrator, etc.
Main Processing of Tungsten Alloy Swaging Rod:
1). Mixing
2). Pressing
3). Sintering
4). Heat treatment
5). Swaging
6). Machining
Repeated heat treatment and swaging is performed need at least several times.
In this way, tungsten alloy swaging rod can be improved at tensile strength as well decrease elongation and impact toughness.


Tungsten Alloy Swaging Military Rod Properties Table

Composition

Processing
g/cm3
Density
g/cm3

Mpa
Tensile
strength
Min. Mpa
%
Elongation
Min. %
HRC
Hardness
Min. HRC

J/cm2
Impact
Toughness
J/cm2
90W-7Ni-3Fe +
Heat
treatment+Sw
aging
17.10±0.15 1000-1100 18-29 25-29 123
91W-6Ni-3Fe +
Heat
treatment+Sw
aging
17.60±0.15 1250-1350 8-18 35-45 33
92W-5N-3iFe
Heat
treatment
17.65±0.15 1250-1350 8-18 35-45 33
93
W-4Ni-3Fe
+
Heat
treatment+Sw
aging
18.10±0.10 1250-1350 7-18 35-45 33
95 WNiFe +
Heat
treatment+Sw
aging
18.10±0.15 1250-1400 6-12 37-47 13
96 WNiFe +
Heat
treatment+Sw
aging
18.30±0.15 1250-1400 3-8 37-47 13
97 WNiFe +
Heat
treatment+Sw
aging
17.20±0.15 1300-1400 2-7 37-47 10







 
 
 

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