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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Dynamic and static error identification and separation method for three-axis CNC machine tools based on feature workpiece cutting
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Dynamic and static error identification and separation method for three-axis CNC machine tools based on feature workpiece cutting

机译:基于特征工件切割的三轴CNC机床动态和静态误差识别与分离方法

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摘要

CNC machine tools play an extremely important role in the equipment manufacturing industry. Because a machine tool has multiple geometric errors which are highly coupled, the error identification process is difficult. Most direct and indirect measurement methods do not consider the dynamic errors in the actual cutting process. This study aims to optimize the error identification process of three-axis CNC machine tools, and proposes an efficient identification and separation method for the dynamic error and the quasi-static error based on feature workpiece cutting. In this study, a stepped feature workpiece that can reflect geometric errors is designed, and the mapping relationship between the geometric error components and the features is established. After the feature workpiece is cut, it performs two tests of on-machine measurement and CMM calibration sequentially. It can realize the identification and separation of 7 geometric errors and corresponding dynamic errors based on the two sets of test data. This method takes the actual cutting workpiece as the error source and can identify and separate the dynamic error and the quasi-static error simultaneously. Thus, the measurement efficiency of this method is higher than direct measurements. The geometric error identification result is highly consistent with the laser interferometer measurement, which proves the method in this study is feasible, efficient, and accurate.
机译:CNC机床在设备制造业中起着极其重要的作用。由于机床具有多个高耦合的几何误差,因此难以识别过程。最直接和间接的测量方法不考虑实际切割过程中的动态误差。本研究旨在优化三轴CNC机床的错误识别过程,并提出了一种基于特征工件切割的动态误差和准静态误差的有效识别和分离方法。在该研究中,设计了一种可以反映几何误差的阶梯式特征工件,并且建立了几何误差分量和特征之间的映射关系。在切割特征工件后,它顺序执行两个机上测量和CMM校准的测试。它可以基于两组测试数据实现7个几何误差和相应的动态误差的识别和分离。该方法将实际切割工件作为错误源,可以同时识别和分离动态误差和准静态误差。因此,该方法的测量效率高于直接测量。几何误差识别结果与激光干涉仪测量高度一致,这证明了本研究中的方法是可行,高效和准确的。

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