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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A methodology for systematic geometric error compensation in five-axis machine tools
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A methodology for systematic geometric error compensation in five-axis machine tools

机译:五轴机床系统几何误差补偿的方法

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摘要

To enhance the accuracy, an efficient methodology was developed and described for systematic geometric error correction and their compensation in five-axis machine tools. The methodology is capable of compensating the overall effect of all position-dependent and position-independent errors which contribute to volumetric workspace. It was implemented on a five-axis grinding machine for error compensation and for the check of its effectiveness. Error compensation algorithm was designed, and a routine was written in Matlab software. The developed technique and software are based on an error table which interprets the function of axis through cubic spline technique and synthesis modeling of a machine tool. Recursive compensation methodology was used to remove the machine errors from the actual tool path and inverse technique was implemented to find the corrected positions of prismatic and rotary joints. Moreover, it can convert the corrected tool paths into practical compensated NC codes. The generated, corrected and modified NC codes directly fed to the controller of a five-axis machine tool. Validation of the technique was preceded by repeated experimentation of measurement and through machining of typical standard workpieces with some additional specific features. Experimental results exhibit effective compensation and remarkable improvement in the parametric and volumetric-workspace accuracy of the five-axis machine tool.
机译:为了提高精度,开发并描述了一种有效的方法,用于在五轴机床中进行系统的几何误差校正及其补偿。该方法能够补偿所有与位置有关和与位置无关的误差的整体影响,这些误差会影响体积工作空间。它在五轴磨床上实施,以进行误差补偿和检查其有效性。设计了误差补偿算法,并用Matlab软件编写了例程。所开发的技术和软件基于误差表,该误差表通过三次样条技术和机床的综合建模来解释轴的功能。使用递归补偿方法从实际刀具路径中消除了机器误差,并采用了逆向技术来找到棱柱形和旋转接头的校正位置。此外,它可以将校正后的刀具路径转换为实际补偿的NC代码。生成的,校正的和修改的NC代码直接馈送到五轴机床的控制器。对该技术进行验证之前,需要重复进行测量实验并通过对具有某些其他特定功能的典型标准工件进行机加工。实验结果显示了有效的补偿,并显着提高了五轴机床的参数化和体积工作空间精度。

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