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The determination of ploughing force and its influence on material properties in metal cutting

机译:金属切削中犁力的确定及其对材料性能的影响

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The ploughing force induced by cutting edge radius and/or tool flank wear is an important factor in tool wear monitoring, material flow stress estimation, chip formation mechanisms, part surface integrity, and finite element modeling of metal cutting. In the literature, the ploughing force has been estimated based on the cyclic force after the end of steady-state cutting. However, the cyclic force does not consistently appear in many cutting conditions. In this paper, the ploughing force is estimated by the extrapolation method, to zero uncut chip thickness, and used for correcting the estimate of material flow stress. The corrected flow stresses show negative strain rate sensitivity, while the flow stresses based on the measured raw force data show positive strain rate. The corrected flow stresses appear to be more uniform when plotted against the uncut chip thickness. In addition, the corrected flow stresses agree with the compression test data by appropriate extrapolation. Therefore, the extrapolation approach seems to be acceptable to estimate ploughing force in the absence of the cyclic force.
机译:切削刃半径和/或刀具侧面磨损引起的犁刀力是刀具磨损监控,材料流应力估计,切屑形成机制,零件表面完整性和金属切削的有限元建模的重要因素。在文献中,耕犁力是根据稳态切割结束后的循环力估算的。但是,在许多切削条件下,循环力并非始终如一。本文采用外推法估算了耕犁力,使未切屑厚度为零,并用于修正材料流应力的估算值。校正后的流应力显示出负应变率敏感性,而基于测得的原始力数据的流应力显示出正应变率。当针对未切屑的厚度进行绘制时,校正后的流应力似乎更加均匀。此外,通过适当的外推,校正后的流应力与压缩测试数据一致。因此,在没有循环力的情况下,外推法似乎可以用来估算耕犁力。

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