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Experimental Parametric Relationships for Chip Geometry in Dry Machining of the Ti6Al4V Alloy

机译:Ti6Al4V合金干式加工中切屑几何形状的实验参数关系

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摘要

The Ti6Al4V alloy is included in the group of difficult-to-cut materials. Segmented chips are generated for a wide range of cutting parameters. This kind of chip geometry leads to the periodic variation of machining forces, tool vibrations, and work part-tolerance inaccuracies. Therefore, the analysis of chip morphology and geometry becomes a fundamental machinability criterion. However, few studies propose experimental parametric relationships that allow predicting chip-geometry evolution as a function of cutting parameters. In this work, an experimental analysis of the influence of cutting speed and feed rate on various chip-geometric parameters in dry machining of the Ti6Al4V alloy was carried out. In addition, the chip morphology and chip microstructure were studied. A clear dependence of certain chip-geometric parameters on the cutting parameters studied was found. From the experimental data, several parametric relationships were developed. These relationships were able to predict the evolution of different geometric parameters as a function of cutting speed and feed, within the tested range of values. The differences between the proposed models and the experimental data were also highlighted. These parametric equations allowed quantifying the value of parameters in which the trend was clear.
机译:Ti6Al4V合金包括在难切削材料中。分段切屑针对各种切削参数生成。这种切屑几何形状会导致加工力,刀具振动和工件零件公差的周期性变化。因此,切屑形态和几何形状的分析成为可加工性的基本标准。但是,很少有研究提出实验参数关系,这些关系可以预测切屑几何形状随切削参数的变化。在这项工作中,对Ti6Al4V合金干式加工中切削速度和进给速度对各种切屑几何参数的影响进行了实验分析。此外,研究了芯片的形态和显微组织。发现某些切屑几何参数对所研究的切削参数有明显的依赖性。根据实验数据,开发了几种参数关系。这些关系能够在测试值范围内预测不同几何参数随切削速度和进给量的变化。还突出了所提出的模型与实验数据之间的差异。这些参数方程式可以量化趋势明显的参数值。

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