Tungsten Alloy Swaged Bars or High HRC Bars

Product Details
Customization: Available
Application: Aviation, Electronics, Industrial, Medical
Standard: GB, ASTM
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  • Tungsten Alloy Swaged Bars or High HRC Bars
  • Tungsten Alloy Swaged Bars or High HRC Bars
  • Tungsten Alloy Swaged Bars or High HRC Bars
  • Tungsten Alloy Swaged Bars or High HRC Bars
  • Tungsten Alloy Swaged Bars or High HRC Bars
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Basic Info.

Model NO.
93WNiFe
Purity
93wnife
Alloy
Alloy
Shape
Round
Type
Tungsten Bars
Detail of Size
Diameter≥8.3mm, Length≤700mm
Type of Bar
Swaged
Transport Package
Export Standard
Specification
93WNife
Trademark
none
Origin
Mudanjiang
HS Code
81019990
Production Capacity
20 Tons/Month

Product Description

Introduction of Tungsten Alloy swaged rod

The normal tungsten alloy rod after swaging, ultimate tensile strength and hardness would be increased greatly. The ultimate tensile strength of general tungsten alloy rod is 920 MPa, hardness is 25HRC. However, after swaging, the ultimate tensile strength can reach 1200 MPa, hardness is 35HRC. We could even control at 1400 MPa, 40HRC. This type of rod is one of our main products. Usually the composition of this kind of products is 92%WNiFe.

1. Dimension: Diameter≥8.3mm, Length≤700mm

2. Density: 17.0-18.10 g/cm3
3. Composition: W content: 92~95%, W-Ni-Fe
4. Surface: swaged state

 

Tungsten Alloy Military Swaging Rod Main Properties:

* High density 
* High melting point 
* Small volume 
* Excellent hardness 
* Superior wearing resistance 
* High ultimate tensile strength 
* High ductility 
* High temperature resistance 
* Low vapor pressure

 

Appliance of tungsten heavy alloy swaged rod

Tungsten alloy swaging rod can be use in machining, CNC toolings, anti-seismic mill holder etc.




The tungsten bar is now strong, but very brittle at room temperature. It can be made more malleable by raising its temperature to between 1200°C to 1500°C. At this temperature, the bar can be passed through a swager. A swager is a device which reduces the diameter of a rod by passing it through a die which is designed to hammer the rod at about 10,000 blows per minute. Typically a swager will reduce the diameter by about 12% per pass. Swaging elongates the crystals, creating a fibrous structure. Although this is desirable in the finished product for ductility and strength, at this point the rod must be stress-relieved by reheating. 

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