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Optimal On-Machine Measurement of Position-Independent Geometric Errors for Rotary Axes in Five-Axis Machines with a Universal Head

机译:具有通用头部的五轴机器中的旋转轴的位置独立几何误差的最佳机械测量

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摘要

This study proposes an optimal on-machine measurement method to measure position-independent geometric errors of five-axis machines, including machine tools and coordinate measuring machines, with a universal head. This measurement requires only a calibrated three-dimensional (3-D) probe and a precision sphere, which are fundamental components of on-machine measurement systems in general, to minimize measurement costs, including operator effort and operating time. Eight position-independent geometric errors are used to describe the coordinate systems of the two rotary axes through a kinematic analysis. The center of the precision sphere, which is stationary during the measurement, is measured at various angles of the rotary axes. Then, the linearized relationship between the measured positions of the precision sphere and the geometric errors is derived using an error synthesis model under rigid-body and small-value assumptions. The proposed method is tested through a simulation for validation. The geometric errors of a five-axis coordinate measuring machine with a universal head are measured with measurement uncertainty by applying the proposed method. Then, the measurement results are confirmed by comparing the measured positions of the precision sphere and calculated positions using the measured geometric errors at the other (i.e., the arbitrary, or not measured) angles of rotary axes.
机译:本研究提出了一种最佳的机器测量方法,以测量五轴机器的位置独立的几何误差,包括机床和坐标测量机,具有通用头。该测量仅需要校准的三维(3-D)探头和精密球体,这通常是机上测量系统的基本组件,以最大限度地减少测量成本,包括操作员努力和运行时间。八个独立的几何误差用于通过运动分析描述两个旋转轴的坐标系。在测量期间静止的精密球体的中心以旋转轴的各个角度测量。然后,使用刚体和小值假设下的误差合成模型导出精密球体的测量位置与几何误差之间的线性化关系。通过用于验证的模拟测试该方法。通过应用所提出的方法测量具有通用头的五轴坐标测量机的几何误差,通过测量不确定性测量。然后,通过将精密球体的测量位置和计算位置的测量的位置使用另一个(即任意或未测量的)的旋转轴的角度进行比较来确认测量结果。

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