首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A separate-edge force coefficients' calibration method using specific condition for cutters with variable helix and pitch angles combining the runout effect
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A separate-edge force coefficients' calibration method using specific condition for cutters with variable helix and pitch angles combining the runout effect

机译:一种单独的边缘力系数的校准方法,使用具有变量螺旋和俯仰角的切割器的特定条件结合跳动效应

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摘要

Classical ways of computing cutting force coefficients cannot be used by the cutters with non-uniform helix and pitch angles. So, this paper presents a novel separate-edge-forecast method to compute cutting force coefficients for any kind of flank-end cutter, especially for cutters with non-uniform helix and pitch angles. Using this method, the cutter runout can be combined into the cutting force coefficients without computing the cutter runout parameters. Simultaneously, the method predicts the cutting force coefficients for every cutter edge. Firstly, a series of three-axis machining experiments, which must satisfy the specific condition that only one cutter edge is removing materials at any time, is conducted. Then, the cutting force-curves are divided into N force lobes. Each lobe is assigned to the corresponding cutter edge using an algorithm. Subsequently, the cutter edge and the corresponding cutting force lobe are used to determine the cutting force coefficients. This means N cutter edges have N groups of cutting force coefficients, correspondingly. Finally, in order to verify the validity and correctness of the proposed method, a cutter with non-uniform helix and pitch angle is utilized to predict cutting force coefficients based on which the cutting forces are also computed. The results demonstrate that the cutting forces predicted agree well with the data measured. Simultaneously, it can be observed that the method can predict the coefficients considering the cutter runout effect.
机译:具有非均匀螺旋和俯仰角的切割器不能使用计算切割力系数的经典方式。因此,本文提出了一种新的单独预测方法,用于计算任何类型的侧面切割器的切割力系数,特别是对于具有非均匀螺旋和俯仰角的切割器。使用该方法,切割器跳动可以组合到切割力系数中而不计算切割器跳动参数。同时,该方法预测每个刀具边缘的切割力系数。首先,进行一系列三轴加工实验,该实验必须满足仅在任何时间去除材料的特定条件。然后,切割力曲线被分成n力叶片。每个叶片使用算法分配给相应的刀具边缘。随后,刀具边缘和相应的切割力叶用于确定切割力系数。这意味着N切割器边缘具有N组切割力系数,相应地。最后,为了验证所提出的方法的有效性和正确性,利用具有非均匀螺旋和俯仰角的刀具来预测基于该切削力系数的切割力系数。结果表明,预测的切割力与测量的数据很好。同时,可以观察到该方法可以预测考虑刀具跳动效应的系数。

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