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A novel path generation method of onsite 5-axis surface inspection using the dual-cubic NURBS representation

机译:使用双三次NURBS表示法的现场五轴表面检查的新路径生成方法

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摘要

Onsite surface inspection with a touch probe or a laser scanner is a promising technique for efficiently evaluating surface profile error. The existing work of 5-axis inspection path generation bears a serious drawback, however, as there is a drastic orientation change of the inspection axis. Such a sudden change may exceed the stringent physical limit on the speed and acceleration of the rotary motions of the machine tool. In this paper, we propose a novel path generation method for onsite 5-axis surface inspection. The accessibility cones are defined and used to generate alternative interference-free inspection directions. Then, the control points are optimally calculated to obtain the dual-cubic non-Uniform rational B-splines (NURBS) curves, which respectively determine the path points and the axis vectors in an inspection path. The generated inspection path is smooth and non-interference, which deals with the 'mutation and shake' problems and guarantees a stable speed and acceleration of machine tool rotary motions. Its feasibility and validity is verified by the onsite inspection experiments of impeller blade.
机译:用接触式探针或激光扫描仪进行现场表面检查是有效评估表面轮廓误差的有前途的技术。然而,现有的5轴检查路径生成工作具有严重的缺点,因为检查轴的方向发生了急剧变化。这种突然的变化可能会超出机床旋转运动的速度和加速度的严格物理极限。在本文中,我们提出了一种用于现场五轴表面检测的新颖路径生成方法。定义了辅助功能圆锥体,并用于生成替代的无干扰检查方向。然后,最优地计算控制点以获得双三次非均匀有理B样条曲线(NURBS)曲线,分别确定检查路径中的路径点和轴矢量。所生成的检查路径是平滑且无干扰的,从而解决了“变异和抖动”问题,并保证了机床旋转运动的稳定速度和加速度。叶轮叶片的现场检查实验证明了其可行性和有效性。

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