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Numerical simulation of titanium alloy dry machining with a strain softening constitutive law

机译:应变软化本构关系的钛合金干式加工的数值模拟

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摘要

In this study, the commercial finite element software FORGE2005, able to solve complex thermo-mechanical problems is used to model titanium alloy dry machining. One of the main machining characteristics of titanium alloys is to produce a special chip morphology named “saw-tooth chip” or serrated chip for a wide range of cutting speeds and feeds. The mechanism of saw-tooth chip formation is still not completely understood. Among the two theories about its formation, this study assumes that chip segmentation is only induced by adiabatic shear band formation and thus no material failure occurs in the primary shear zone. Based on the assumption of material strain softening, a new material law was developed. The aim of this study is to analyze the newly developed model’s capacity to correctly simulate the machining process. The model validation is based on the comparison of experimental and simulated results, such as chip formation, global chip morphology, cutting forces and geometrical chip characteristics. A good correlation was found between the experimental and numerical results, especially for cutting speeds generating low tool wear.
机译:在这项研究中,使用能够解决复杂热机械问题的商业有限元软件FORGE2005对钛合金干式加工进行建模。钛合金的主要加工特征之一是产生一种特殊的切屑形态,称为“锯齿切屑”或锯齿状切屑,以适应各种切削速度和进给。锯齿形切屑形成的机理仍不完全清楚。在有关其形成的两种理论中,这项研究假设切屑分段仅由绝热剪切带的形成引起,因此在主剪切带中不会发生材料破坏。基于材料应变软化的假设,开发了一种新的材料定律。这项研究的目的是分析新开发的模型正确模拟加工过程的能力。模型的验证是基于对实验结果和模拟结果的比较,例如切屑形成,整体切屑形态,切削力和几何切屑特性。在实验结果和数值结果之间发现了很好的相关性,特别是对于切削速度低,刀具磨损少的情况。

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