Error modeling, sensitivity analysis and assembly process of a class of 3-DOF parallel kinematic machines with parallelogram struts

Tian Huang, Ya Li, Guobao Tang, Siwei Li, Xingyu Zhao, Whitehouse David. J., Chetewyn Derek G., Xian-Ming Liu
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引用次数: 41

Abstract

This paper presents an error modeling methodology that enables the tolerance design, assembly and kinematic calibration of a class of 3-DOF parallel kinematic machines with parallelogram struts to be integrated into a unified framework. The error mapping function is formulated to identify the source errors affecting the uncompensable pose error. The sensitivity analysis in the sense of statistics is also carried out to investigate the influences of source errors on the pose accuracy. An assembly process that can effectively minimize the uncompensable pose error is proposed as one of the results of this investigation.
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一类具有平行四边形支撑的三自由度并联机构的误差建模、灵敏度分析及装配过程
本文提出了一种误差建模方法,将一类具有平行四边形支撑的三自由度并联机构的公差设计、装配和运动标定集成到一个统一的框架中。建立误差映射函数,识别影响不可补偿位姿误差的源误差。通过统计意义上的灵敏度分析,探讨了源误差对姿态精度的影响。研究结果之一是提出了一种能有效地减小不可补偿位姿误差的装配工艺。
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