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A study of the cutting-induced heating effect on the machined surface in ultra-precision raster milling of 6061 Al alloy

机译:6061铝合金超精密光栅铣削中切削诱导的加工表面热效应研究

摘要

In ultra-precision machining, the heating effect on a workpiece induced by cutting process itself plays an important role in the machining process as it affects tool life, machining accuracy, and the surface quality of the workpiece. This paper discusses the cutting-induced heating effect in ultra-precision raster milling based on the study of the time-temperature-dependent precipitation of 6061 aluminum alloy. Experiments are designed to estimate the temperature variation of the workpiece in ultra-precision machining by comparing the change in the size of precipitates in isothermal heat treatment with those in raster milling process under different depth of cut. Microscopical examination under a scanning electron microscope (SEM) revealed that the temperature on the raster-milled surface is much higher than 500°C. In the last part of this paper, the heat generation of the workpiece in the process of ultra-precision raster milling is simulated by finite element method, the result of which is found to be consistent with that from SEM.
机译:在超精密加工中,切削过程本身对工件产生的热效应在加工过程中起着重要作用,因为它影响刀具寿命,加工精度和工件的表面质量。本文在研究6061铝合金随时间-温度变化的析出的基础上,探讨了超精密光栅铣削中切削诱导的热效应。通过比较等温热处理中的析出物大小变化与光栅铣削过程中不同切削深度下的析出物大小变化,设计实验来估计超精密加工中工件的温度变化。在扫描电子显微镜(SEM)下的显微镜检查显示,光栅研磨表面的温度远高于500°C。在本文的最后一部分,通过有限元方法模拟了超精密光栅铣削过程中工件的发热现象,其结果与SEM一致。

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