PCBN Tool Wear for Hard Materials Based on ThermodynamicsPrincipals

Fang Shao, Yu Ting Wang, Yingqun Xiao, Lihua Xiao, Kecheng Zhang
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引用次数: 1

Abstract

The temperature rise exceeds over 1000°C in cutting process while working with PCBN tools high speed machining. This intense temperature results in wearing of tools and thus diffusion and oxidation are mainly responsible for wearing. This paper proposes the oxidation and diffusion wearing for PCBN cutting tools and analysis has been carried out considering thermodynamics principles. The next step is to find out dissoluation concentration of PCBN tool materials. The temperature range is different for these materials. The Gibbs free energy criterion is utilized for analysis purposes and validates the formed diffusion reaction rules in extreme temperature scenario. The PCBN tools were used for carrying out machining tests at different speeds 50, 95,100 and 180 m/min, feed of 0.1, 0.2 and depth of cut was 0.1, 0.8, 1, and 1.5 mm respectively on controlled lathe machine PUMA300LM. It was revealed that experimentals results matches with theoratical data. These findings will be utilized for future reference for tools designing and material selection.
基于热力学原理的硬质材料PCBN刀具磨损
使用PCBN刀具高速加工时,切削过程温升超过1000℃。这种高温度导致工具磨损,因此扩散和氧化是磨损的主要原因。本文提出了PCBN刀具的氧化和扩散磨损,并结合热力学原理进行了分析。下一步是确定PCBN刀具材料的溶解浓度。这些材料的温度范围是不同的。利用吉布斯自由能准则进行分析,验证了在极端温度条件下形成的扩散反应规律。采用PCBN刀具在PUMA300LM数控车床上分别以50、95、100和180 m/min的速度、0.1、0.2的进给量和0.1、0.8、1、1.5 mm的切削深度进行加工试验。实验结果与理论数据吻合较好。这些发现将为将来的工具设计和材料选择提供参考。
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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