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Anti-Friction and Anti-Wear Mechanisms of Micro Textures and Optimal Area Proportion in the End Milling of Ti6Al4V Alloy

机译:微纹理的抗摩擦和抗磨损机制和Ti6Al4V合金的最终研磨中的最佳区域比例

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摘要

To solve the problems of low efficiency, poor surface quality, and short tool life in the milling of titanium alloys, this study took the micro-textured ball-end milling tool as a starting point and established a platform for friction and wear tests. Based on a new method of external friction theory, the anti-friction and anti-wear mechanisms of the micro-textured tool were analyzed. According to these mechanisms, the optimal area proportion of the micro textures in the contact area between the chip and tool was theoretically investigated considering the milling force, and the proportion was verified experimentally. This work provides a reference for improving the cutting performance of hard metal tools.
机译:为了解决效率低,表面质量差,较低的钛合金厂生命的问题,本研究采用了微纹理的球端研磨工具作为起点,并建立了摩擦和磨损试验的平台。基于一种新的外部摩擦理论方法,分析了微纹理工具的抗摩擦和抗磨损机制。根据这些机制,考虑到铣削力,理论上研究了芯片和工具之间的接触面积中的微纹理的最佳面积比例,并且实验验证了比例。这项工作为提高了硬质金属工具的切割性能提供了参考。

著录项

  • 作者

    Xianli Liu; Xin Tong; Song Yu;

  • 作者单位
  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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