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Postprocessor for five-axis machining of STL surfaces based on Nagata interpolation and optimization of rotation angles

机译:基于Nagata插值的STL表面的五轴加工后处理器和旋转角度的优化

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摘要

This paper proposes a postprocessor which applies the appropriate rotation rules to reduce the kinematic error (KE). Our first contribution is an algorithm which minimizes the KE using the Hausdorff distance. The shortest path algorithm includes the constraints relevant to the limits of the linear and the rotation axis. The proposed procedure is compared with state-of-the-art methods. It demonstrates an advantage in terms of the kinematic error for test surfaces characterized by a sharp curvature. The second contribution is testing interpolation methods of the STL surfaces. The first step of this procedure is the evaluation of the tessellation error (TE), i.e., the difference between the actual surface and the local or global interpolation obtained from the STL file. The numerical results show that a simple local interpolation using normal vectors proposed by Nagata performs well. The method has been tested against several state-of-the-art interpolation procedures, demonstrating a significant advantage. The proposed elements are integrated into a postprocessor. The experiments have been performed on a virtual and the actual tilt-table five-axis machining center (Haas VF-2TR).
机译:本文提出了一个后处理器,它适用适当的旋转规则来减少运动误差(KE)。我们的第一种贡献是一种算法,可使用Hausdorff距离最小化ke。最短路径算法包括与线性和旋转轴的限制相关的约束。将所提出的程序与最先进的方法进行比较。它在特征在于尖锐曲率的测试表面的运动误差方面展示了优势。第二贡献是测试STL表面的插值方法。该过程的第一步是评估曲面细分误差(TE),即实际表面和从STL文件获得的本地或全局插值之间的差异。数值结果表明,使用Nagata提出的正常向量的简单局部插值表现良好。该方法已经针对几种最先进的内插程序进行了测试,证明了显着的优势。所提出的元素集成到后处理器中。已经在虚拟和实际倾斜表五轴加工中心(HAAS VF-2TR)进行了实验。

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