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Integrated post-processor for 5-axis machine tools with geometric errors compensation

机译:用于具有几何误差补偿的5轴机床的集成后处理器

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Geometric errors of 5-axis machine tools introduce great deviation in real workpiece manufacture and on-machine measurement like touch-trigger probe measurement. Compensation of those errors by toolpath modification is an effective and distinguished method considering the machine calibration costs and productivity. Development of kinematic transformation model is involved in this paper to clarify the negative influences caused by those errors at first. The deviation of the designed toolpath and the real implemented toolpath in workpiece coordinate system is calculated by this model. An iterative compensation algorithm is then developed through NC code modification. The differential relationship between the NC code and the corresponding real toolpath can be expressed by Jacobi matrix. The optimal linear approximation of the compensated NC code is calculated by utilizing the Newton method. Iteratively applying this approximation progress until the deviation between the nominal and real toolpath satisfies the given tolerance. The variations of the geometric errors at different positions are also taken into account To this end, the nominal toolpath and the geometric errors of the specific 5-axis machine tool are considered as the input The new compensated NC code is generated as the output. The methodology can be directly utilized as the post-processor. Experimental results demonstrate the sensibility and effectiveness of the compensation method established in this study. (C) 2015 Elsevier Ltd. All rights reserved.
机译:5轴机床的几何误差在实际工件制造和在机测量(如接触式测头测量)中引入了很大的偏差。考虑到机床校准成本和生产率,通过修改刀具路径来补偿这些误差是一种有效且出色的方法。本文首先涉及运动学转换模型的开发,以弄清这些错误造成的负面影响。通过该模型可以计算出工件坐标系中设计刀具路径和实际实现刀具路径的偏差。然后通过NC代码修改来开发迭代补偿算法。 NC代码和相应的实际刀具路径之间的微分关系可以用Jacobi矩阵表示。利用牛顿法计算出补偿NC代码的最佳线性逼近。迭代地应用此近似过程,直到标称刀具路径与实际刀具路径之间的偏差满足给定公差为止。为此,还考虑了不同位置处的几何误差的变化。为此,将标称刀具路径和特定5轴机床的几何误差视为输入。将生成新的补偿NC代码作为输出。该方法可以直接用作后处理器。实验结果证明了本研究建立的补偿方法的敏感性和有效性。 (C)2015 Elsevier Ltd.保留所有权利。

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