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Five-Axis Flank Milling of Sculptured Surface with Barrel Cutters

机译:滚刀的雕刻面五轴侧面铣削

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摘要

A flank milling tool positioning method using a barrel cutter is proposed. An offset point is used as the first anchor point. Two rotary angles of the barrel cutter are adjusted to find the optimized tool position with the largest machining strip width. The result tool position calculated using the proposed method is gouge-free because the local interference avoidance method is integrated inside the tool positioning procedure. Error distribution beneath the barrel cutter is well estimated by virtual of the instant envelope curve of the cutter. The envelope curve is discretized into points. The distances between these points and the model surface are the machining errors beneath the cutter. The employment of the envelope curve also largely reduces the computational load of the algorithm. Finally, numerical implementation and simulation are performed to validate the feasibility of the method.
机译:提出了一种使用桶形铣刀的侧铣刀定位方法。偏移点用作第一个锚点。调节桶形切刀的两个旋转角度,以找到具有最大加工带宽度的最佳刀具位置。使用建议的方法计算出的结果刀具位置是无切屑的,因为在刀具定位过程中集成了避免局​​部干扰的方法。桶形刀具下方的误差分布可以通过刀具的即时包络线的虚拟值很好地估算。包络曲线离散为点。这些点与模型表面之间的距离是刀具下方的加工误差。包络曲线的使用还大大减少了算法的计算量。最后,通过数值计算和仿真验证了该方法的可行性。

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