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Corner smoothing transition algorithm for five-axis linear tool path

机译:五轴线性刀具路径的角平滑转换算法

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In five-axis machining the trajectory is composed of linear path which has the feature of tangential discontinuity, so that the velocity will be abrupt or be equal to zero at the corner of the adjacent segments. This problem greatly effects the machining efficiency and quality. So a pair of double cubic NURBS curves satisfying the predefined fitting accuracy are used to fair the corners of the adjacent five-axis linear segments and generate the smooth tool path. On the basis of the proposed transition model, the parametric synchronization of the smoothed double NURBS trajectories and the remained two linear segments are respectively constructed to realize the smoothing variation along the tool trajectory. The approximation error has an analytical relationship with the transition length of the smoothed curve. It is easily to construct the analytical double NURBS curves satisfying the pre-defined error limit. The simulation and experiment examples show that the proposed transition algorithm can satisfy the error constraint, generate the curvature-continuous double NURBS tool path, make local corner transition smooth and improve the machining quality.
机译:在五轴加工中,轨迹由具有切向不连续性的特征的线性路径组成,使得速度将突然或等于相邻段的角落的零。这个问题会大大影响加工效率和质量。因此,一对满足预定义拟合精度的双立方NURBS曲线用于公平相邻的五轴线性段的拐角,并产生平滑的刀具路径。在所提出的转换模型的基础上,分别构造平滑双NURBS轨迹和剩余的两个线性段的参数同步以实现沿工具轨迹的平滑变化。近似误差具有与平滑曲线的转换长度的分析关系。很容易构建满足预定义错误限制的分析双NURBS曲线。仿真和实验示例表明,所提出的过渡算法可以满足误差约束,产生曲率连续双新鲜NURBS工具路径,使局部拐角过渡平稳,提高加工质量。

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