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Cold forming processes in particular represent a significant challenge for wear reduction.
Cold forming processes have the potential to enable net-shape components to be made.
During cold forming processes like deep drawing of steel sheets, tools are subjected to various loads.
A torque converter impeller hub is usually made through sequential cold forming processes: forward extrusion, upsetting, piercing and finishing.
Micro cold forming processes sometime require thin sheets of high strength materials often with a thickness below 30 μm to manufacture products with good mechanical properties.
The design of cold forming processes requires the availability of a procedure able to deal with the prevention of ductile fracture.
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Effects of cold forming process on material properties were investigated.
In cold forming process, die service life basically refers to the die fatigue life.
Required rivet strength is achieved by designed cold forming process and followed by effect of material hardening.
A newly developed cold forming process, the linear flow splitting process, allows the bifurcation of thin metal sheets by severe plastic deformation (SPD).
An important cause that determines and influences the intensity of this phenomenon is the distribution of stresses generated by the cold forming process in the deformed material.
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