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Online Tool Wear Monitoring by the Analysis of Cutting Forces in Transient State for Dry Machining of Ti6Al4V Alloy

机译:Ti6Al4V合金干式加工瞬态切削力在线监测刀具磨损

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摘要

In this work, the analysis of the cutting speed and feed rate influence on tool wear and cutting forces in Ti6Al4V alloy dry machining is presented. The study has been focused on the machining in a transient state. The tool wear mechanisms, tool wear intensity and cutting forces evolution have been analyzed as a function of the cutting parameters. Experimental results show that the main cutting force amplitude exhibits a general trend to increase with both cutting parameters. Crater wear was more evident at high cutting speeds, whereas flank wear was present on the whole interval of the cutting parameters analyzed. Furthermore, the cutting speed shows a slightly higher influence on crater wear and the feed rate shows a higher influence on flank wear. Finally, several experimental parametric models have been obtained. These models allow predicting the evolution of crater and flank tool wear, as well as the cutting forces, as a function of the cutting parameters. Additionally, a model that allows monitoring the tool wear on the machining transient state as a function of the main cutting force amplitude has been developed.
机译:在这项工作中,分析了切削速度和进给速度对Ti6Al4V合金干式加工中刀具磨损和切削力的影响。该研究集中在瞬态下的加工上。根据切削参数分析了刀具的磨损机理,刀具的磨损强度和切削力的演变。实验结果表明,主切削力幅值呈现出随两个切削参数而增加的总体趋势。在高切削速度下,火山口磨损更为明显,而在所分析的整个切削参数区间中,齿腹磨损均存在。此外,切削速度对弹坑磨损表现出稍高的影响,而进给速率对齿腹磨损表现出更高的影响。最后,获得了几个实验参数模型。这些模型允许根据切削参数来预测凹坑和侧面刀具磨损的演变以及切削力。另外,已经开发了一种模型,该模型可以根据主切削力振幅来监控加工瞬态下的刀具磨损。

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