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Prediction of the Principal Stress Direction for 5-axis Ball End Milling

机译:预测5轴球端研磨的主应力方向

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While regenerating damaged components, e.g. compressor blades, the removal of excess weld material called re-contouring often determines the surface integrity including the residual stress state. A load-specific residual stress state is beneficial for lifetime. This leads to the necessity to predict the resulting residual stress state after machining. The paper describes two models, which predict the principal stress direction as a residual stress characteristic for 5-axis ball nose end milling of Ti-6Al-4V. One model uses process force components, the other is based on the microtopography of the workpiece, which is influenced by the kinematics of the process.
机译:在再生损坏的部件时,例如,压缩机刀片,去除称为重新轮廓的过量焊接材料通常确定包括残余应力状态的表面完整性。载荷特定的残余应力状态是有益的。这导致需要在加工后预测所得到的残余应力状态。本文描述了两种型号,其将主应力方向预测为Ti-6Al-4V的5轴球鼻器端铣削的残余应力特性。一种模型使用处理力分量,另一个基于工件的微复印件,这受到该过程的运动学的影响。

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