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FEM Study on the dynamic effects of CMM geometric errors

机译:CMM几何误差动态效应的FEM研究

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Geometric errors are seldom considered the generations of CMM dynamic errors. This paper presents the dynamic effects of the geometric errors of CMM in fast probing, and investigates the properties with Finite Elements Method (FEM). The FEM model was composed of CMM moving bridge and its guide way. Presuming CMM guide way as an ideal rigid geometry, then angular errors were generated by the rotations of guide way around a corresponding coordinate axis, while translation errors came from the translations of guide way. Thus the 6 geometric errors on each guide way were completely decoupling and the corresponding dynamic effects were studied respectively. Analyses show that the angular errors around Y and Z-axes, £y(x) and £z(x), can induce remarkable dynamic effects at probe tip, especially in a CMM with low stiffness air bearing.
机译:几何误差很少考虑一代CMM动态错误。本文介绍了CMM在快速探测中的几何误差的动态效果,并通过有限元方法(FEM)来研究性质。有组织模型由CMM移动桥及其引导方式组成。假设CMM引导方式作为理想的刚性几何形状,然后通过引导方式围绕相应的坐标轴的旋转产生角度误差,而平移误差来自引导方式的翻译。因此,每种指导方式的6个几何误差是完全去耦,并且分别研究了相应的动态效果。分析表明,y和z轴,y(x)和z(x)周围的角度误差可以在探针尖端诱导显着的动态效果,尤其是具有低刚度空气轴承的CMM。

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