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These properties result in poor machinability and high tool wear.
This working process requires a high tool center point (TCP) precision to detect production errors.
Problems such as poor surface finish and high tool wear are common.
An improvement in the efficiency of the cutting process requires high tool performance.
High temperature loads in cutting processes can cause high tool wear and damages in the subsurface zone of the workpiece.
So, high tool wear and low part removal rate are related to a high number of contacts.
Similar(46)
Excessive tool-shoulder frictional heat softening of the material is the reason for the formation of the flash, and high tool-shoulder pressure leads to the ejection of an excessive amount of flash (Bo et al. 2011).
Higher tool speed was accompanied by an increase in soil stress in front of the tool.
The higher tool forward speed produced a 31% higher forward movement and a 56% higher lateral movement.
Experimental observations indicate higher tool life with nanocrystalline AlTiCrN coated carbide tools which shows encouraging potential of these tools to hard turning.
Applying the appropriate hone design stabilizes the cutting edge, leads to improved wear behavior and higher tool life.
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