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A Study of Mechanics in Brittle–Ductile Cutting Mode Transition

机译:脆-塑性切割模式转变的力学研究

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摘要

This paper presents an investigation of the mechanism of the brittle–ductile cutting mode transition from the perspective of the mechanics. A mechanistic model is proposed to analyze the relationship between undeformed chip thickness, deformation, and stress levels in the elastic stage of the periodic chip formation process, regarding whether brittle or ductile mode deformation is to follow the elastic stage. It is revealed that, the distance of tool advancement required to induce the same level of compressive stress decreases with undeformed chip thickness, and thereby the tensile stress below and behind the tool decreases with undeformed chip thickness. As a result, the tensile stress becomes lower than the critical tensile stress for brittle fracture when the undeformed chip thickness becomes sufficiently small, enabling the brittle–ductile cutting mode transition. The finite element method is employed to verify the analysis of the mechanics on a typical brittle material 6H silicon carbide, and confirmed that the distance of the tool advancement required to induce the same level of compressive stress becomes smaller when the undeformed chip thickness decreases, and consequently smaller tensile stress is induced below and behind the tool. The critical undeformed chip thicknesses for brittle–ductile cutting mode transition are estimated according to the proposed mechanics, and are verified by plunge cutting experiments in a few crystal directions. This study should contribute to better understanding of the mechanism of brittle–ductile cutting mode transition and the ultra-precision machining of brittle materials.
机译:本文从力学的角度研究了脆性-韧性切削模式转变的机理。提出了一种力学模型来分析在周期性切屑形成过程的弹性阶段未变形切屑厚度,变形和应力水平之间的关系,考虑脆性还是延性模式变形要遵循弹性阶段。揭示了,引起相同水平的压应力所需的工具前进距离随着未变形切屑厚度而减小,并且因此在工具下方和后面的拉伸应力随着未变形切屑厚度而减小。结果,当未变形的切屑厚度变得足够小时,拉伸应力变得低于脆性断裂的临界拉伸应力,从而使脆性-延性切削模式转变成为可能。采用有限元方法验证了对典型脆性材料6H碳化硅的力学分析,并确认了当未变形切屑厚度减小时,引起相同水平的压应力所需的刀具前进距离会变小,并且因此,在工具下方和后面会产生较小的拉伸应力。根据拟议的力学估算了脆性-延性切削模式转变的临界未变形切屑厚度,并通过在几个晶体方向上的切入实验进行了验证。这项研究应有助于更好地理解脆性-韧性切削模式转变的机理以及脆性材料的超精密加工。

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