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Diamond tool wear in ultra-precision machining

机译:超精密加工中的金刚石刀具磨损

摘要

Diamond has many outstanding properties, such as high hardness, great toughness, high capability up to a nanometric tool cutting edge, high thermal conductivity, low friction, and high wear resistance. Accordingly, it is employed as an efficient tool in ultra-precision machining (UPM). However, diamond tool wear (DTW) in UPM is an inevitable physical phenomenon and even a little DTW will produce a direct impact on nanometric surface roughness. With a focus on diamond’s physical characteristics, this paper looks at the current investigations of DTW and posits an improved understanding of DTW in UPM. Firstly, the differences in DTW caused by different workpiece materials are reviewed, as are the factors influencing DTW and its effects. Secondly, the DTW mechanisms are summarized, including DTW anisotropy, DTW features, and DTW behaviors, with diamond tool performances. Thirdly, DTW measuring, DTW monitoring, DTW controlling, and DTW modeling are introduced. Thirdly, different methods for DTW suppression are surveyed with a view to improving the cutting performance of diamond tools. Finally, the challenges and opportunities for DTW, which may be of particular interest for future studies, are discussed with several conclusions.
机译:金刚石具有许多出色的性能,例如高硬度,高韧性,高达纳米刀具切削刃的能力,高导热性,低摩擦和高耐磨性。因此,它被用作超精密加工(UPM)中的有效工具。但是,UPM中的金刚石刀具磨损(DTW)是不可避免的物理现象,即使是少量的DTW也将对纳米表面粗糙度产生直接影响。本文着重于钻石的物理特性,着眼于DTW的最新研究,并提出了对UPM中DTW的更好理解。首先,回顾了由不同工件材料引起的DTW差异,以及影响DTW及其影响的因素。其次,总结了DTW机制,包括DTW各向异性,DTW特征和DTW行为,以及金刚石工具的性能。第三,介绍了DTW测量,DTW监视,DTW控制和DTW建模。第三,研究了抑制DTW的不同方法,以提高金刚石工具的切削性能。最后,讨论了DTW的挑战和机遇,这可能对未来的研究特别感兴趣,并得出了一些结论。

著录项

  • 作者

    Zhang SJ; To S; Zhang GQ;

  • 作者单位
  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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