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On the Influence of Work Material Microstructure on Chip Formation, Cutting Forces and Acoustic Emission When Machining Ti-6Al-4V

机译:加工Ti-6Al-4V时工作材料的显微组织对切屑形成,切削力和声发射的影响

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The influence of heat treatment of work material on chip formation, when machining Ti-6Al-4V, was studied through microstructural investigation of chips, as well as response on cutting forces and acoustic emission. Three different microstructures were investigated; equiaxed, bimodal and Widmanst?tten. It is well known that machining of titanium produces shear localized chips at all industrially practical cutting speeds and feed rates, however there is also a transition from aperiodic to periodic saw- tooth chip formation. The feed rate was varied at constant cutting speed to study this transition from aperiodic to periodic saw-tooth chips in the three microstructures. Face turning cutting tests were used when sensor signals were collected. The results from this investigation stress the importance to consider work material microstructure when studying the chip formation process, and its impact on cutting forces and acoustic emission, when machining Ti-6Al-4V.
机译:通过对切屑的显微组织研究以及对切削力和声发射的响应,研究了加工Ti-6Al-4V时对工件材料进行热处理对切屑形成的影响。研究了三种不同的微观结构。等轴,双峰和Widmanst?tten。众所周知,钛的加工会在所有工业实用的切削速度和进给速度下产生局部剪切的切屑,但是,也存在着从非周期性到周期性的锯齿形切屑的过渡。进给速度以恒定的切削速度变化,以研究在三个微结构中从非周期性锯齿状到周期性锯齿状切屑的过渡。当收集传感器信号时,使用了转弯切削测试。这项研究的结果强调了在研究切屑形成过程时考虑工件材料微观结构的重要性,以及在加工Ti-6Al-4V时对切削力和声发射的影响。

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