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Volumetric accuracy evaluation for five-axis machine tools by modeling spherical deviation based on double ball-bar kinematic test

机译:基于双球杆运动试验的球面偏差模拟五轴机床的容积精度评估

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摘要

This paper presents a new spherical deviation measurement method to evaluate the volumetric accuracy of fiveaxis machine tools based on double ball-bar measurements. Nine circular test paths with three kinds of tool axis directions in XY, YZ and ZX planes are planned to construct a typical sphere. The radial deviations measured by ball-bar are used to calculate the spherical deviation, which is defined as the maximum radial range of deviations around a least-squares sphere. Compared to the circular deviation described in ISO10791.6, which could only reflect the errors in one test path with one kinds of tool axis direction separately, the proposed method can reflect not only each test path's error, but also the offset errors between different test paths. And it could comprehensively quantify the effect of accuracies of the five axes together in three-dimensional space. The proposed method for five-axis machine tool can not only reflect the tool center position errors caused by three linear axes, but also indicate the tool axis direction errors caused by two rotary axes. The proposed method is verified through simulations and experiments on a five-axis machine tool.
机译:本文介绍了一种新的球形偏差测量方法,以评估基于双球杆测量的FiveAxis机床的体积精度。计划在XY,YZ和ZX平面中具有三种工具轴方向的九个圆形试验路径,以构建典型的球体。通过球杆测量的径向偏差用于计算球形偏差,该球形偏差被定义为最小平方球周围的偏差的最大径向范围。与ISO10791.6中描述的圆形偏差相比,这可以仅在一个测试路径中分别反映一个测试路径中的错误,所提出的方法不仅可以反映每个测试路径的错误,还可以反映出不同测试之间的偏移误差路径。它可以全面地量化三维空间中五轴精度的效果。五轴机床的提出方法不能反映由三个线性轴引起的工具中心位置误差,而且还指示由两个旋转轴引起的刀具轴方向误差。通过在五轴机床上的仿真和实验验证所提出的方法。

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