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Finite Element Investigation of the Influence of Thermophysical Parameters on Segmented chip Formation during High Speed Cutting

机译:高速切削过程中热物理参数对切屑形成的影响的有限元研究

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A 2D fully thermal-mechanical coupled finite element model is applied to study the influence of material parameters on serrate chip formation during high speed cutting process. The serrated chip formation during high speed machining was predicted. Of interests are the effects of thermal conductivity, specific heat and density. Results showed significant influence of these thermophysical parameters on the serrated chip phenomena, especially in the case of the density. Increasing thermal conductivity specific heat and density lead to a decreasing degree of segmentation. The influence of the thermal conductivity on the cutting force and the specific heat on maximum temperatures in the shear band is also discussed.
机译:应用二维全热力耦合有限元模型来研究材料参数对高速切削过程中锯齿状切屑形成的影响。预测了高速加工期间锯齿状切屑的形成。令人感兴趣的是热导率,比热和密度的影响。结果表明,这些热物理参数对锯齿状切屑现象有显着影响,特别是在密度的情况下。导热系数比热和密度的增加导致分段度的降低。还讨论了热导率对切削力和比热对剪切带最高温度的影响。

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