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Method to evaluate speed and accuracy performance of CNC machine tools by speed-error 2-D representation

机译:用速度误差二维表示评价数控机床速度和精度性能的方法

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In this research, we propose a method to evaluate both speed and accuracy performance of CNC machine tools at the same time. An important facet of the contouring performance of machine tools with computer numerical control (CNC) is the machining of workpieces within the desired accuracy and within as short a time as possible. For this reason, a method for evaluating speed and accuracy in the two dimensions of speed and error based on the actual trajectory, which is the actual movement trajectory with respect to the linear axes of CNC machine tools, has been proposed. In this research, we explain the method proposed for linear axes and propose a method to evaluate the speed and accuracy of a rotary axis and a linear axis in the two dimensions of speed and error by introducing a cylindrical surface to the combined movement of the rotary and linear axes. With experiments, we quantitatively evaluated the speed and accuracy of multiple CNC machine tools using two-dimensional representation with graphs of the actual speed and maximum error for the combined movement of a rotary axis and a linear axis.
机译:在这项研究中,我们提出了一种同时评估数控机床速度和精度性能的方法。具有计算机数控(CNC)的机床轮廓加工性能的一个重要方面是在期望的精度范围内并在尽可能短的时间内加工工件。因此,提出了一种基于实际轨迹即相对于CNC机床的线性轴的实际运动轨迹的,在速度和误差的二维中评价速度和精度的方法。在这项研究中,我们解释了针对直线轴提出的方法,并提出了一种方法,即通过将圆柱面引入旋转运动的组合运动中来评估旋转轴和直线运动在速度和误差两个维度上的速度和精度。和线性轴。通过实验,我们使用二维表示和旋转轴和线性轴组合运动的实际速度和最大误差的图形来定量评估多种CNC机床的速度和精度。

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