首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Tool wear mechanisms involved in crater formation on uncoated carbide tool when machining Ti6Al4V alloy
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Tool wear mechanisms involved in crater formation on uncoated carbide tool when machining Ti6Al4V alloy

机译:加工Ti6Al4V合金时在未涂层硬质合金刀具上形成凹坑的刀具磨损机理

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摘要

When machining titanium alloys at cutting speeds higher than 60 m/min using cemented carbide cutting tools, the tool wears out rapidly. With the ever-increasing use of titanium alloys, it is essential to address this issue of rapid tool wear in order to reduce manufacturing costs. Therefore, the intention of this study was to investigate all possible tool wear mechanisms involved when using uncoated carbide cutting tools to machine Ti6Al4V titanium alloy at a cutting speed of 150 m/min under dry cutting conditions. Adhesion, diffusion, attrition, and abrasion were found to be the mechanisms associated with the cratering of the rake surface of the cutting tool. The plastic deformation of the cutting edge was also noticed which resulted in weakening of the rake surface and clear evidence has been presented. Based on this evidence, the process of the formation of the crater wear has been described in detail.
机译:使用硬质合金切削刀具以高于60 m / min的切削速度加工钛合金时,刀具会很快磨损。随着钛合金的不断使用,解决这一工具快速磨损问题以降低制造成本至关重要。因此,本研究的目的是研究在干切削条件下使用无涂层硬质合金切削刀具以150 m / min的切削速度加工Ti6Al4V钛合金时涉及的所有可能的刀具磨损机理。发现粘附力,扩散力,磨损和磨损是与切削工具前刀表面的凹陷有关的机制。还注意到切削刃的塑性变形,这导致前刀面的削弱,并且已经提供了清晰的证据。基于该证据,已经详细描述了火山口磨损的形成过程。

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