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首页> 外文期刊>Journal of Materials Processing Technology >The direct-error-compensation method of measuring the error of a six-freedom-degree parallel mechanism CMM
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The direct-error-compensation method of measuring the error of a six-freedom-degree parallel mechanism CMM

机译:测量六自由度并联机构坐标测量机误差的直接误差补偿方法

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摘要

A six-freedom-degree parallel mechanism CMM is designed. It has some characteristic, such as good system rigidity, rapid motion velocity, not-accumulative error, and a flexible end position stance. The errors influencing the probe position stance are analysed: they are original error of the machine, the process error for measuring, and other stochastic errors. Amongst them, the original error of the machine is the main factor causing probe error. Probe error influences directly the measuring precision of the six-freedom-degree parallel mechanism CMM. A coordinate system for analyzing the position is set-up and its position reverse solution model is obtained. Based on the position reverse solution model and according to matrix complete differential-coefficient theory, the relationship between the original machine error and the probe position stance error is deducted, and the error model is built. Creating a program in the Matlab language to calculate the error model, the position stance error of the probe is obtained under the condition of determinate machine error. Using this result to correct the probe position stance, namely the direct-error-compensation method, can clearly improve the measurement precision. The theory and flow chart of this method are introduced in the paper.
机译:设计了六自由度并联机构坐标测量机。它具有一些特性,例如良好的系统刚性,快速的运动速度,不累积的误差以及灵活的最终位置姿态。分析影响探针位置姿态的误差:它们是机器的原始误差,测量过程误差以及其他随机误差。其中,机器的原始错误是导致测头错误的主要因素。测头误差直接影响六自由度并联机构三坐标测量机的测量精度。建立了用于分析位置的坐标系,并获得了其位置反向求解模型。在位置逆解模型的基础上,根据矩阵完全微分系数理论,推导了原始机械误差与测头位置姿态误差之间的关系,建立了误差模型。用Matlab语言创建一个程序来计算误差模型,在确定机器误差的条件下获得测头的位置姿态误差。利用该结果来校正测头位置姿态,即直接误差补偿法,可以明显提高测量精度。介绍了该方法的原理和流程图。

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