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Finite element simulation of high-speed cutting forces

机译:高速切削力的有限元模拟

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A finite element model of a two-dimensional, orthogonal metal-cutting process is used to study the influence of the cutting speed on the cutting force and the chip formation process. The model uses a generic flow stress law. Friction is neglected as its speed dependence is only poorly known. It is shown that the experimentally observed decrease of the cutting force with the cutting speed and the plateau at high cutting speeds are reproduced by the simulation. The decrease is mainly caused by a change in the shear angle due to thermal softening. At large cutting speeds, segmented chips are produced. It is also shown by an analytical calculation that segmented chips at large cutting speeds are energetically more favourable than continuous chips.
机译:使用二维正交金属切削过程的有限元模型研究切削速度对切削力和切屑形成过程的影响。该模型使用通用流动应力定律。摩擦被忽略了,因为它对速度的依赖性只是鲜为人知。结果表明,通过仿真再现了实验观察到的切削力随切削速度的降低和高切削速度下的平稳状态。减少的主要原因是由于热软化引起的剪切角的变化。以大切削速度生产分段切屑。通过分析计算还显示,在大切削速度下,切屑比连续切屑在能量上更有利。

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