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Tool life and wear mechanisms in high speed machining of Ti-6Al-4V alloy with PCD tools under various coolant pressures

机译:在各种冷却液压力下用PCD刀具高速加工Ti-6Al-4V合金时的刀具寿命和磨损机理

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摘要

Usage of titanium alloys has increased since the past 50 years despite difficulties encountered during machining. Many studies involving different tool materials, cutting parameters, tool geometry and cutting fluids when machining this important aerospace material have been published. However, there are relatively few literatures available on the application of ultra hard tools in the machining of titanium-alloys. The primary objective of this study is to investigate the behaviour of Polycrystalline Diamond (PCD) tools when machining Ti-6Al-4V alloy at high speed conditions using high pressure coolant supplies. Tool performance under different tribological conditions and the dominant wear mechanisms were investigated. Increase in coolant pressure tends to improve tool life and reduce the adhesion tendency, accelerated by the susceptibility of titanium alloy to gall during machining. Adhesion and attrition are the dominant wear mechanisms when machining at the cutting conditions investigated.
机译:尽管在加工过程中遇到困难,但自过去50年以来,钛合金的使用量一直在增加。在加工这种重要的航空航天材料时,涉及不同刀具材料,切削参数,刀具几何形状和切削液的许多研究已经发表。然而,关于超硬工具在钛合金加工中的应用的文献相对较少。这项研究的主要目的是研究使用高压冷却剂在高速条件下加工Ti-6Al-4V合金时多晶金刚石(PCD)工具的性能。研究了不同摩擦条件下的刀具性能以及主要的磨损机理。冷却液压力的增加往往会延长刀具寿命并降低粘附趋势,这是由于钛合金在加工过程中易受磨损而加速的。在研究的切削条件下进行加工时,粘附力和磨损是主要的磨损机理。

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