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Simulation of cutting process in peripheral milling by predictive cutting force model based on minimum cutting energy

机译:基于最小切削能量的预测切削力模型模拟外围铣削切削过程

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摘要

The cutting force and the chip flow direction in peripheral milling are predicted by a predictive force model based on the minimum cutting energy. The chip flow model in milling is made by piling up the orthogonal cuttings in the planes containing the cutting velocities and the chip flow velocities. The cutting edges are divided into discrete segments and the shear plane cutting models are made on the segments in the chip flow model. In the peripheral milling, the shear plane in the cutting model cannot be completely made when the cutting point is near the workpiece surface. When the shear plane is restricted by the workpiece surface, the cutting energy is estimated taking into account the restricted length of the shear plane. The chip flow angle is determined so as to minimize the cutting energy. Then, the cutting force is predicted in the determined chip flow model corresponding to the workpiece shape. The cutting processes in the traverse and the contour millings are simulated as practical operations and the predicted cutting forces verified in comparison with the measured ones. Because the presented model determines the chip flow angle based on the cutting energy, the change in the chip flow angle can be predicted with the cutting model.
机译:通过基于最小切削能量的预测力模型预测外围铣削中的切削力和切屑流向。铣削中的切屑流模型是通过在包含切削速度和切屑流速度的平面中堆积正交切削而制成的。切削刃被分为离散的部分,并且在切屑流模型中的这些部分上建立了剪切平面切削模型。在外围铣削中,当切削点靠近工件表面时,不能完全在切削模型中创建剪切平面。当剪切平面受工件表面限制时,考虑到剪切平面的受限制长度,估计切割能量。确定切屑流动角度以使切削能量最小。然后,在确定的切屑流模型中预测与工件形状相对应的切削力。将横铣和轮廓铣中的切削过程模拟为实际操作,并将预测的切削力与测得的结果进行比较。因为提出的模型基于切削能量确定切屑流角,所以可以用切削模型预测切屑流角的变化。

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