Implementation of exact thermal analysis in extended Oxley’s predictive machining theory

Aakash A Dubey, D. I. Lalwani
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Abstract

Finding the exact solution to the generated temperatures that are more closely aligned with the actual nature of the process is important while conducting analytical modeling of the chip formation process in metal cutting. The extended Oxley’s predictive machining theory is implemented with the exact thermal analysis approach. This study presents temperature distributions near the shear plane on the workpiece side along with an exact temperature prediction for orthogonal cutting using the Komanduri-Hou model for the shear plane heat source. An explicit solution is also derived to obtain the tool-chip interface temperatures. The intricate formulae utilized in the original research study of Komanduri-Hou are solved using MATLAB code. The approach used here makes it easier to use the exact solution in future research for various categories of materials. The temperature distribution plots help to clarify the metal-cutting procedure and understand the different heat zones. The outcomes of shear angle, forces, stresses, strains, strain rates, and average temperatures are consistent with those reported in earlier studies.
在扩展的奥克斯利预测加工理论中实施精确热分析
在对金属切削中的切屑形成过程进行分析建模时,找到与加工过程的实际性质更接近的温度生成精确解非常重要。扩展的 Oxley 预测加工理论采用了精确热分析方法。本研究介绍了工件侧剪切面附近的温度分布,并利用剪切面热源的 Komanduri-Hou 模型对正交切削进行了精确温度预测。此外,还推导出一个显式解决方案,以获得刀具-芯片界面温度。Komanduri-Hou 原始研究中使用的复杂公式是通过 MATLAB 代码求解的。这里使用的方法使得在未来的研究中更容易将精确解用于各类材料。温度分布图有助于阐明金属切削过程并了解不同的热区。剪切角、力、应力、应变、应变率和平均温度的结果与早期研究报告的结果一致。
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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