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A Model to Determine the Effect of Tool Diameter on the Critical Feed Rate for Ductile-Brittle Transition in Milling Process of Brittle Material

机译:确定刀具直径对脆性材料铣削过程中球墨脆转变的临界进给率影响的模型

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摘要

This paper presents analytical and experimental results of ductile-mode machining of brittle material by milling process. In milling process of brittle material, feed per edge is the predominant parameter to achieve ductile-mode machining and hence it limits the permissible material removal rate. An analytical model has been proposed to evaluate the effect of tool diameter on the critical feed per edge for ductile-brittle transition in milling process of brittle material. The proposed model has been validated experimentally by performing microcutting tests on tungsten carbide workpiece by milling process. It has been established by the model and the experimental results that an end-mill of larger diameter improves the critical feed per edge for ductile-brittle transition in milling process of brittle material.
机译:本文介绍了通过铣削工艺对脆性材料进行延性加工的分析和实验结果。在脆性材料的铣削过程中,每个边缘的进给是实现延性模加工的主要参数,因此它限制了允许的材料去除率。提出了一种分析模型来评估刀具直径对脆性材料铣削过程中的韧性-脆性转变的每边临界进给量的影响。通过铣削对碳化钨工件进行微切削试验,对所提出的模型进行了实验验证。通过模型和实验结果表明,较大直径的立铣刀改善了脆性材料铣削过程中韧性-脆性转变的每边临界进给量。

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