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Nonlinear error analysis of convex surface grinding in RTCP mode

机译:RTCP模式下凸面研磨的非线性误差分析

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When linear interpolation is carried out on the micro straight line segment, the actual motion synthesized by each motion axis of the machine tool will deviate from the programmed trajectory, resulting in the rotation error of the cutter shaft. The reason of error in five axis NC machining of RTCP system is analyzed. The mathematical model of nonlinear error formation process is established. The calculation formula of nonlinear error is simplified. It is pointed out that the nonlinear error is related to the length of the interpolation line segment and the angle between the normal vectors of the convex surface of the workpiece at the tool contact at both ends of the interpolation line. Finally, it is found that the error easily ignored in RTCP mode: the nonlinear error produced by grinding convex workpiece with five axis CNC machine tool is less than the discrete error when the tool path curve is discretized into a straight line.
机译:当在微直线段执行线性插值时,通过机床的每个运动轴合成的实际运动将偏离编程的轨迹,从而导致切割器轴的旋转误差。 分析了RTCP系统五轴NC加工中误差的原因。 建立了非线性误差形成过程的数学模型。 简化了非线性误差的计算公式。 指出,非线性误差与插值线段的长度有关,并且在内插线的两端的工具接触处的工件的凸面的凸面之间的正常向量之间的角度。 最后,发现在RTCP模式下容易被忽略的错误:当刀具路径曲线被离散到直线时,通过用五轴CNC机床研磨凸起工件产生的非线性误差小于离散误差。

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