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Correction of positioning and angular errors for ball screw feed unit

机译:滚珠丝杠进给单元的位置和角度误差的校正

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摘要

In the present study, we developed a new feed correction mechanism which corrected not only a positioning error (i.e., feed deviation) but also an angular error (i.e., yaw of a table). A correction mechanism including two piezoelectric actuators was constructed and installed between double nuts. The correction mechanism corrects positioning error if both piezoelectric actuators are expanded to the same length, and corrects angular error if one piezoelectric actuator is expanded and the other is contracted. First, the positioning and angular errors correction functions were investigated separately. A load was applied to one side of the table in order to simulate a counter force during machining. In the positioning error correction, a low-frequency component of positioning error was corrected effectively under the condition that the load for the table was set to at least 50 N. In the angular error correction, the correction capability was comparable to that of the positioning error correction up to the maximum load torque to the table, 1.4 Nm. The load torque was limited to 1.4 Nm because both piezoelectric actuators reached their saturation voltage. Finally, simultaneous correction of positioning error and angular error was examined, and the simultaneous correction capability was confirmed to be equivalent to the separate correction capabilities.
机译:在本研究中,我们开发了一种新的进给校正机制,不仅可以校正定位误差(即进给偏差),还可以校正角度误差(即工作台的偏航角)。构造了包括两个压电致动器的校正机构,并将其安装在双螺母之间。如果两个压电致动器都膨胀到相同的长度,则校正机构校正定位误差;如果一个压电致动器膨胀而另一个压电致动器收缩,则校正机构校正角度误差。首先,分别研究了定位和角度误差校正功能。为了模拟加工过程中的反作用力,在工作台的一侧施加了负载。在定位误差校正中,在将工作台的负载设置为至少50 N的条件下,可以有效地校正定位误差的低频分量。在角度误差校正中,校正能力与定位的校正能力相当。误差校正,直到表的最大负载扭矩为1.4 Nm。由于两个压电致动器均达到其饱和电压,因此负载扭矩被限制为1.4 Nm。最后,检查了定位误差和角度误差的同时校正,并确认了同时校正能力与单独的校正能力等效。

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