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Spline-constrained tool-path planning in five-axis flank machining of ruled surfaces

机译:规则面五轴侧面加工中受样条约束的刀具路径规划

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摘要

Previous optimization-driven tool-path planning methods provide an effective approach to machining error control in five-axis flank milling of ruled surfaces. However, the finished part typically exhibits poor surface roughness. This paper proposes a new planning method for overcoming this problem. The proposed method generates a spline-curve-constrained tool path that produces minimized geometrical deviations on the machined surface, maintains satisfactory surface quality, and reduces the dimensionality in the solution space. A particle swarm optimization scheme was developed to determine the coefficients of the curve equations defining the constrained tool motion. A machining experiment was conducted and the measurement results validated the proposed method.
机译:以前的优化驱动的刀具路径规划方法为有效控制直纹曲面的五轴侧面铣削中的误差提供了有效的方法。然而,成品零件通常表现出较差的表面粗糙度。本文提出了一种解决这一问题的新的规划方法。所提出的方法生成了样条曲线约束的刀具路径,该路径在加工表面上产生的几何偏差最小,保持令人满意的表面质量,并减小了求解空间的尺寸。开发了粒子群优化方案来确定定义受约束的工具运动的曲线方程的系数。进行了机加工实验,测量结果验证了该方法的有效性。

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