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Diffusion and Oxidation Wear of PCBN Tool when Cutting Materials Difficult-to-cut Based on Thermodynamics

机译:基于热力学的切割材料难以切割时PCBN工具的扩散和氧化磨损

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摘要

Cutting temperature always highly reaches over to 1000°C when high speed machining with PCBN tools. Diffusion of tool material element may have important influence on tool wear at such high temperature, the diffusion wear and oxidation wear have become the major wear mechanism. In this paper, the rules of diffusion wear and oxidation wear for PCBN cutting tools are proposed and analyzed based on thermodynamics theory. Dissolution concentrations in typical normal workpice materials of PCBN tool material at different temperature are then calculated. Diffusion reaction rules in high temperature are developed and analyzed using Gibbs free energy criterion. The machining tests were conducted using the PCBN tools at different cutting speeds of 50, 95,100 and 180 m/min, feed of 0.1, 0.2 and depth of cut of 0.1, 0.8, 1, and 1.5 mm respectively on PUMA300LM numerically-controlled lathe. It was found that the theoretical results were uniform with the experimental data; the results will provide useful references for tool material design and selection.
机译:使用PCBN工具的高速加工时,切割温度始终达到1000°C。工具材料元件的扩散可能对这种高温的工具磨损有重要影响,扩散磨损和氧化磨损已成为主要的磨损机构。本文提出了基于热力学理论的PCBN切削工具的扩散磨损和氧化磨损。然后计算PCBN工具材料在不同温度下PCBN工具材料的典型正常工作材料中的溶出浓度。使用Gibbs自由能标准开发和分析高温的扩散反应规则。使用PCBN工具以50,95,100和180m / min的不同切割速度进行加工试验,分别在PUMA300LM数控车床上进料0.1,0.2和0.1,0.8,1和1.5mm的进料。结果发现理论结果与实验数据均匀;结果将为工具材料设计和选择提供有用的参考。

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