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Finite Element Simulation of Residual Stress on the Surface in the Cutting Considering Tool Flank Wear

机译:考虑刀具侧面磨损的切削表面残余应力的有限元模拟

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摘要

Deformation caused by residual stress has been one of the main reasons influencing the machining accuracy, studies on machining residual stress should be performed. The tool flank wear on the cutting process has great influence on cutting heat which will infulence the distribution of residual stress, therefore,we should do the finite element simulation of cutting tool flank wear on the heat-affected firstly,then simulate and forecast the surface residual stress, studies on the effect of tool flank wear on the distribution of machined surface residual stress Johnson-Cook's coupled thermal-mechanical model is used as workpiece material model, thermal-displacement coupled brick are used to mesh, while friction between tool and work piece uses modified Coulomb's law whose slide friction area is combined with sticking friction. By means of FEA, residual stress on the machined surface and cutting temperature under different tool flank wear conditions are obtained. The results are compared and analyzed, and then we can get the fundamental influencing law on machined surface residual stress of tool flank wear.
机译:残余应力引起的变形已成为影响加工精度的主要原因之一,应进行加工残余应力的研究。切削过程中刀刃磨损对切削热的影响很大,将影响残余应力的分布,因此,应首先对热影响切削刃的磨损进行有限元模拟,然后对表面进行模拟和预测残余应力,研究工具侧面磨损对机加工表面残余应力分布的影响约翰逊-库克耦合热机械模型用作工件材料模型,热位移耦合砖用于网格划分,而工具与工件之间的摩擦力该零件使用修正的库仑定律,其滑动摩擦面积与粘着摩擦相结合。通过有限元分析,可以获得在不同的刀具侧面磨损条件下加工表面上的残余应力和切削温度。通过对结果进行比较分析,可以得出影响刀具侧面磨损的加工表面残余应力的基本规律。

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