首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Analytical modelling of cutting forces in near-orthogonal cutting of titanium alloy Ti6Al4V
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Analytical modelling of cutting forces in near-orthogonal cutting of titanium alloy Ti6Al4V

机译:钛合金Ti6Al4V近正交切削中切削力的解析模型

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Titanium and its alloys are difficult to machine due to their high chemical reactivity with tool materials and low thermal conductivity. Chip segmentation caused by the thermoplastic instability is always observed in titanium machining processes, which leads to varied cutting forces and chip thickness, etc. This paper presents an analytical modelling approach for cutting forces in near-orthogonal cutting of titanium alloy Ti6Al4V. The catastrophic shear instability in the primary shear plane is assumed as a semi-static process. An analytical approach is used to evaluate chip thicknesses and forces in the near-orthogonal cutting process. The shear flow stress of the material is modelled by using the Johnson-Cook constitutive material law where the strain hardening, strain rate sensitivity and thermal softening behaviours are coupled. The thermal equations with non-uniform heat partitions along the tool-chip interface are solved by a finite difference method. The model prediction is verified with experimental data, where a good agreement in terms of the average cutting forces and chip thickness is shown. A comparison of the predicted temperatures with published data obtained by using the finite element method is also presented.
机译:钛及其合金由于其与工具材料的高化学反应性和低导热性而难以加工。在钛加工过程中总是观察到由热塑性不稳定性引起的切屑切碎,这会导致切削力和切屑厚度等变化。本文提出了一种钛合金Ti6Al4V的近正交切削中切削力的解析建模方法。主剪切平面中的灾难性剪切不稳定性被假定为半静态过程。在接近正交的切削过程中,使用一种分析方法来评估切屑厚度和作用力。通过使用Johnson-Cook本构材料定律对材料的剪切流动应力进行建模,其中将应变硬化,应变速率敏感性和热软化行为耦合在一起。通过有限差分法求解沿刀具-芯片界面的热分配不均匀的热方程。通过实验数据验证了模型预测,其中显示了在平均切削力和切屑厚度方面的良好一致性。还介绍了预测温度与使用有限元方法获得的公开数据的比较。

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