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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >The kinematics and error modelling of a novel micro-CMM
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The kinematics and error modelling of a novel micro-CMM

机译:新型微型三坐标测量机的运动学和误差建模

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摘要

A novel micro-coordinate measurement machine (micro-CMM) is introduced as a viable device to be used with high precision and high accuracy measurement of part dimensions in micron scale. This design considers eliminating Abb, error, and is intended to achieve submicron accuracy for a work envelope of at least (100 Au 100 Au 100) mm. In this study, a prototype of the new micro-CMM was bui a mathematical measuring model to explicitly define the coordinate of the probe in x, y and z directions have been represented. An algorithm to find the workspace was implemented. The error model of the machine was created and the effect of structural errors on probe position was studied analytically. The significance of each geometric parameter was studied in order to minimize the measuring error and achieve the best machine design. Finally, the results of the analytical error model were confirmed through a Monte Carlo analysis. Moreover, the real measurements of the micro-CMM were compared with the error model.
机译:新型的微坐标测量机(micro-CMM)被引入作为一种可行的设备,可用于微米级零件尺寸的高精度和高精度测量。此设计考虑消除Abb,误差,并旨在为至少(100 Au 100 Au 100)mm的工作范围实现亚微米精度。在这项研究中,构建了新的微型CMM的原型。一个数学测量模型可以明确定义探针在x,y和z方向上的坐标。实现了找到工作空间的算法。建立了机床的误差模型,并分析了结构误差对探头位置的影响。研究了每个几何参数的重要性,以最大程度地减少测量误差并获得最佳的机器设计。最后,通过蒙特卡洛分析确认了分析误差模型的结果。此外,将微型CMM的实际测量值与误差模型进行了比较。

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