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Analysis of Tangential Position Error or Removal Function Error in Ultrasonic- Magnetorheological Combined Finishing

机译:超声波 - 磁流变结合整理中切向位置误差或去除功能误差分析

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Ultrasonic-magnetorheological combined finishing (UMCF) is a new technique for the ultra precision machining of aspheric surfaces, especially for high quality work pieces with small curvature radius concave surfaces. The goal with UMCF is to minimize surface figure errors by optimizing the dwell time and tool path, and the current approach typically results in low amplitude form errors. However, discrepancies exist between the predicted and observed form errors. The major sources of such errors are machine axes positioning errors and unpredicted variations of the removal function. Errors that can produce discrepancies between actual and predicted removal profiles were modelled. A diagnostic method was developed to determine the residual error induced by two types of error. Their effects were examined with numerical simulations and the simulation result was presented. Finally, UMCF experiments are performed on a variety of optical surfaces. The final residual error after polishing is less than 2.6 nm PV values. The successful figuring results prove the validity and advantages of UMCF.
机译:超声波磁流变结合精加工(UMCF)是一种用于非球面表面的超精密加工的新技术,特别是对于具有小曲率半径凹面的高质量工作件。 UMCF的目标是通过优化停留时间和刀具路径来最小化表面图误差,并且当前方法通常导致低幅度形式误差。但是,预测和观察到的形式错误之间存在差异。此类错误的主要来源是机器轴定位误差和未预测的拆卸功能的变化。建模可能产生实际和预测的删除配置文件之间差异的错误。开发了一种诊断方法以确定由两种类型的错误引起的残余误差。用数值模拟检查它们的效果,并提出了仿真结果。最后,UMCF实验在各种光学表面上进行。抛光后的最终残留误差小于2.6nm的光伏值。成功的讨论结果证明了UMCF的有效性和优势。

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