Application of Bucking Bar

Bucking bar is a work tool received behind work surfaces to provide a backing member in applying impact fasteners and including intermitted toolhead and handle parts with a low-recoil impact-absorbing spacer provided there between to take shock loads in compression and shear.

Bucking bars are used on the backside of a metal rivet to counter the force of the hammering on the other side. They also can be used to absorb the force of rivet guns, reducing the vibration of bucking.

Bucking bars used to form bucktails on rivets. And come in many different shapes and sizes. They are normally made from an alloy steel similar to tool steel. The particular shape to be used depends upon the location and accessibility of the rivet to be driven.

The size and weight of the bar depend on the size and alloy of the rivet to be driven. Under certain circumstances, and for specific rivet installations, specially designed bucking bars are manufactured locally.

Bucking bars are normally made from tungsten heavy alloy. All edges are deburred and working surfaces are polished for troubles-free use. This helps to prevent marring of formed bucktails. Please notice that never hold a bucking bar in a vise unless the vise jaws are equipped with protective covers to prevent marring of the bucking bar.


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Tungsten Applications for Radiation Shielding

 

Wolfmet tungsten alloy is ideal for shielding against X rays and gamma radiation. The very high density of Wolfmet tungsten 
shielding (more than 60% denser than lead) allows a reduction in the physical size of shielding components, without compromising 
their rigidity or the effectiveness of the shielding characteristics.
 

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Radiation Shielding Effect

 

On the radiation shielding effect of Heavy Alloy, we examined a comparative evaluation with lead. Fig.1 shows the attenuation 
rate of γ-ray (Co60) against the change in thickness of Heavy Alloy and lead. The γ-ray (Co60) used for the evaluation this time is that eradiated from relatively a high energy zone, which becomes an issue in the case of nuclear power station. 
This evaluation proves that Heavy Alloy of about 3mm or 7mm thickness has the radiation shielding effect equivalent to lead 
of about 4.5mm or 10mm thickness respectively. Consequently,
 
Heavy Alloy, compared with lead, has 1.5 times shielding effect against γ-ray (Co60).
 

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Tungsten Applications for Aerospace

 

Wolfmet tungsten alloys are generally used by aerospace designers for balancing components or reducing vibration. The high density of Wolfmet materials allows maximum sensitivity from optimum mass and is particularly valuable in situations where a large mass has to be contained in a confined space.
 

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What is Heavy Alloy?

 

Heavy Alloy is a tungsten-group sintered alloy consisting tungsten and binder phase with nickel, copper, iron, etc.
 
Typical material characteristics of Heavy Alloy are following.
▪ High density 
▪ Excellent radiation shielding effect 
▪ Superior machinability to tungsten 
▪ High mechanical strength 
▪ Low thermal expansion and high thermal conductance 
▪ Excellent oxidation resistance 
 

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