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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Combined reparameterization-based spiral toolpath generation for five-axis sculptured surface machining
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Combined reparameterization-based spiral toolpath generation for five-axis sculptured surface machining

机译:基于重新参数化的组合螺旋刀具路径生成,用于五轴雕刻曲面加工

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摘要

Reparameterization-based toolpath generation methods are usually adopted for machining triangular meshes, trimmed surfaces and compound surfaces. The quality of the reparameterization has an important effect on that of the surface. In this paper, a combined reparameterization procedure is introduced to generate an optimal mapping between the designed surface and a specified planar circular region with relatively less distortion both in length and in angle. Then, for five-axis sculptured surface machining the mathematical model of spiral guide path with maximum path interval is constructed in the circular region. Cutter contact paths are obtained by inversely mapping the guide path onto the designed surface. Under constraints of gouging and collision, continuous and optimal cutter orientations are subsequently calculated. Finally, the results of simulation and experiment of the machining process are given to illustrate the feasibility and applicability of the proposed method.
机译:通常使用基于重新参数化的刀具路径生成方法来加工三角形网格,修剪曲面和复合曲面。重新参数化的质量对表面质量有重要影响。在本文中,引入了组合的重新参数化过程,以在设计表面和指定的平面圆形区域之间生成最佳映射,同时在长度和角度上的变形相对较小。然后,对于五轴雕刻表面加工,在圆形区域中构建具有最大路径间隔的螺旋导轨的数学模型。刀具接触路径是通过将导向路径反向映射到设计表面上而获得的。在气刨和碰撞的约束下,随后计算出连续的和最佳的刀具方向。最后给出了加工过程的仿真和实验结果,说明了该方法的可行性和适用性。

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