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Tool Orientation Control Using Quaternion Interpolation in Multi-axis Milling of Blade

机译:刀具方向控制在多轴铣削刀片中使用四元流插值

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Focusing on the tool orientation control in multi-axis milling of freeform surface blade, quaternion interpolation method is employed to get smooth and collision-free tool orientation. Presented tool orientation planning method is based on the blade’s shape features, it can avoid collision between the tool and the platform surface. Tool orientations on the boundary curves of the machining area are interpolated by the quaternion interpolation algorithm, and tool orientation for every cutter-contact point on the suction surface and pressure surface are interpolated with tool orientations of the boundaries. Therefore, the interpolation procedures are performed in two different directions of the blade surface. Analysis of examples show that tool orientations interpolated by quaternion interpolation algorithms change smoothly, it can enable steady movement of the machine tool. Furthermore, it can improve the machining efficiency as well as decrease the workload and difficulty of the clean-up of platform surface by the quaternion interpolation algorithm, thus to contribute to the manufacturing technology of freeform surface blade parts.
机译:专注于在多轴铣削自由形状刀片的刀具方向控制上,采用四元插补方法来获得平滑且无碰撞的工具方向。呈现的工具方向规划方法基于刀片的形状特征,可以避免工具与平台表面之间的碰撞。加工区域的边界曲线上的刀具取向由四元线插值算法插值,并且吸入表面和压力表面上的每个刀具接触点的刀具取向与边界的刀具方向插值。因此,插值过程在叶片表面的两个不同方向上进行。例子分析表明,由四元流插值算法插值的刀具方向平滑地改变,可以实现机床的稳定移动。此外,通过四元线插值算法可以提高加工效率以及降低平台表面清除的工作量和难度,从而有助于为自由形式表面叶片部件的制造技术有贡献。

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