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Comparing the kinematic efficiency of five-axis machine tool configurations through nonlinearity errors

机译:通过非线性误差比较五轴机床配置的运动效率

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摘要

Five-axis CNC machines represent a particular class of machine tools characterized by superior versatility. Little attempts were made in the past to compare directly their performances through a common indicator. In this sense, the present study proposes nonlinearity error as a valuable method to quantify the kinematic efficiency of a particular five-axis configuration. Nonlinearity error is defined as the maximum deviation of the cutter-location point from the reference plane generated by the initial and final orientations of the tool during linearly interpolated motions of the cutter along the intended tool path. The proposed concept has demonstrated that nonlinearity error occurs approximately around the middle of the linearly interpolated interval and therefore has validated the current post-processing practice of halfway cutter-location point insertion. The employment of nonlinearity error in the evaluation of the kinematic efficiency of vertical spindle-rotating five-axis machine tools revealed that for an identical machining task, configurations involving the vertical rotational axis tend to move more than those involving only horizontal rotational axes.
机译:五轴CNC机床代表了具有卓越多功能性的一类特殊机床。过去很少尝试通过一个共同的指标直接比较他们的表现。从这个意义上讲,本研究提出了非线性误差作为量化特定五轴配置运动效率的有价值的方法。非线性误差定义为在刀具沿预期刀具路径进行线性内插运动期间,刀具定位点相对于参考平面的最大偏差,该最大偏差是由刀具的初始和最终方向生成的。提出的概念表明非线性误差大约发生在线性插值区间的中间,因此验证了当前中途铣刀定位点插入的后处理实践。在评估垂直主轴旋转五轴机床的运动效率时采用了非线性误差,这表明对于相同的加工任务,涉及垂直旋转轴的配置比仅涉及水平旋转轴的配置倾向于移动更多。

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