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首页> 外文期刊>Journal of Mechanical Science and Technology >A study on the failure mechanism and wear loss of impregnated diamond bits during machining process of armor ceramics
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A study on the failure mechanism and wear loss of impregnated diamond bits during machining process of armor ceramics

机译:铠装陶瓷加工过程中浸渍金刚石比特的破坏机理和磨损研究

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摘要

Thin-wall diamond core bits are usually recommended for the machining of relatively high-sized holes in engineering ceramics. However, during the machining process of engineering ceramics, the tools are usually considerably worn. In this work, the failure mechanism and wear loss of thin-wall impregnated diamond bits has been investigated experimentally during the machining process of Al2O3 armor engineering ceramics. In summary, the failure reasons of the bits can be divided into three cases: Bit skidding, twisted fracture of the bit clamp holder and breakup of the sintering body. The overall wear process of the bits can be roughly divided into three stages: The rapid wear, the stable wear and the sharp wear. The machining duration per hole presents an approximately periodic variation with the number of cumulatively machined holes. Under the experimental conditions, both the bit wear rate and the drilling rate present an approximately periodic variation with the cumulative drilling depth, whereas the corresponding periodic characteristics are not the same. During the hole-machining process, the wear loss of the sintering diamond bits is mainly concentrated on the matrix crown of the bits, but the wear of the matrix binder and the diamond grits on the outer cylindrical surface of the sintering body is negligible.
机译:薄壁金刚石芯比特通常建议在工程陶瓷中加工相对高尺寸的孔。然而,在工程陶瓷的加工过程中,工具通常会很大磨损。在这项工作中,在Al2O3装甲工程陶瓷的加工过程中实验研究了薄壁浸渍金刚石比特的故障机理和磨损。总之,位的故障原因可以分为三种情况:位滑动,钻头夹紧架的扭曲骨折和烧结体的分解。比特的整体磨损过程可以大致分为三个阶段:快速磨损,稳定磨损和锋利的磨损。每个孔的加工持续时间呈现累积加工孔的数量的大致周期性变化。在实验条件下,位磨损率和钻井率均具有累积钻孔深度的大致周期性变化,而相应的周期性特性不相同。在空穴加工过程中,烧结金刚石比特的磨损损失主要集中在比特的基质冠上,但是烧结体的外圆柱表面上的基质粘合剂和金刚石夹在烧结体上可忽略不计。

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