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Hot machining of Ti–6Al–4V: FE analysis and experimental validation

机译:Ti-6Al-4V的热加工:有限元分析和实验验证

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Machining process is a nonlinear process where high stress, temperature and strain are generated in the primary and secondary shear zone. It is difficult to determine these parameters experimentally and also consumes time. In this study, finite-element method (FEM) is applied to hot machining of Ti–6Al–4V alloyusing DEFORM software. The simulations are used to investigate the effect of heating temperature on cutting force, cutting temperature, stress, strain and chip morphology for various machining conditions. The predicted results are compared to results obtained in room temperature and hot machining conditions. From this analysis, it is observed that hot machining reduces the cutting force, and changes the chip morphology. To validate the simulation results, an experimental trial is performed and positive coherence is achieved.
机译:机加工过程是一个非线性过程,其中在主剪切区和次剪切区产生高应力,高温和高应变。很难通过实验确定这些参数,而且会浪费时间。在这项研究中,使用DEFORM软件将有限元方法(FEM)应用于Ti-6Al-4V合金的热加工。仿真用于研究加热温度对各种加工条件下切削力,切削温度,应力,应变和切屑形态的影响。将预测结果与在室温和热加工条件下获得的结果进行比较。从该分析可以看出,热加工降低了切削力,并改变了切屑形态。为了验证仿真结果,进行了实验试验并获得了正相干性。

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