Investigation on tool wear and tool life prediction in micro-milling of Ti-6Al-4V

IF 2.7
Amin Dadgari , Dehong Huo , David Swailes
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引用次数: 45

Abstract

Short tool life and rapid tool wear in micromachining of hard-to-machine materials remain a barrier to the process being economically viable. In this study, standard procedures and conditions set by the ISO for tool life testing in milling were used to analyze the wear of tungsten carbide micro-end-milling tools through slot milling conducted on titanium alloy Ti-6Al-4V. Tool wear was characterized by flank wear rate, cutting-edge radius change, and tool volumetric change. The effect of machining parameters, such as cutting speed and feedrate, on tool wear was investigated with reference to surface roughness and geometric accuracy of the finished workpiece. Experimental data indicate different modes of tool wear throughout machining, where nonuniform flank wear and abrasive wear are the dominant wear modes. High cutting speed and low feedrate can reduce the tool wear rate and improve the tool life during micromachining. However, the low feedrate enhances the plowing effect on the cutting zone, resulting in reduced surface quality and leading to burr formation and premature tool failure. This study concludes with a proposal of tool rejection criteria for micro-milling of Ti-6Al-4V.

Ti-6Al-4V微铣削刀具磨损及寿命预测研究
在难以加工的材料的微加工中,刀具寿命短和刀具磨损快仍然是该工艺经济可行的障碍。本研究采用国际标准化组织(ISO)制定的铣削刀具寿命试验标准程序和条件,通过对钛合金Ti-6Al-4V进行槽铣削,分析了碳化钨微型立铣刀的磨损情况。刀具磨损的特征包括刃口磨损率、刃口半径变化和刀具体积变化。结合加工工件的表面粗糙度和几何精度,研究了切削速度和进给速度等加工参数对刀具磨损的影响。实验数据表明,刀具在加工过程中存在不同的磨损模式,其中非均匀侧面磨损和磨粒磨损是主要的磨损模式。在微加工过程中,高切削速度和低进给速度可以降低刀具磨损率,提高刀具寿命。然而,低进给速度增强了切削区的犁耕效果,导致表面质量下降,导致毛刺形成和刀具过早失效。最后提出了Ti-6Al-4V微铣削刀具弃刀标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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