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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Optimal curvature-smooth transition and efficient feedrate optimization method with axis kinematic limitations for linear toolpath
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Optimal curvature-smooth transition and efficient feedrate optimization method with axis kinematic limitations for linear toolpath

机译:最佳曲率平滑转换和高效进给优化方法线性刀具路径的轴运动限制

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摘要

In industrial areas, the machining performance with linear G01 code is a crucial indicator to evaluate the computer numerical control (CNC) systems and many researchers have presented various methods to deal with the corner tracking issue. However, the axis jerk limitations are not satisfied well and the different axis kinematic limitations are not considered in most researches, which will reduce the machining efficiency and machining quality simultaneously. In this paper, a novel method including trajectory planning, feedrate scheduling, and interpolating is proposed to obtain better machining quality and higher machining efficiency. In trajectory planning, a B-spline curve is utilized to smooth the linear toolpath and obtain a curvature-smooth trajectory, which is third-order geometry continuous. Thereby, a time-optimal method for the geometric continuous trajectory is proposed based on linear programming algorithm in the feedrate scheduling and the bounded multi-constraints, including axis velocity, axis acceleration, axis jerk, and feedrate. Moreover, it can be seen that the proposed method is near Bang-bang control. To reduce the computation time of the optimal numerical method, an efficient method with a look-ahead window around the transition B-spline curve is applied. In the interpolation stage, a novel interpolation method about arc-length is proposed to improve computation efficiency. Finally, simulation and experiment are conducted to show superiorities of the proposed method to the already existing approaches. The results show that the cycling time of the proposed method is reduced by more than 7% than G _(2)method and 20% than G _(3)method with better contour performance.
机译:在工业领域,使用线性G01码的加工性能是评估计算机数控(CNC)系统的重要指标,许多研究人员介绍了各种方法来处理角落跟踪问题。然而,轴混凝件限制不满足,大多数研究中不考虑不同的轴运动限制,这将同时降低加工效率和加工质量。本文提出了一种新的方法,包括轨迹规划,进给调度和内插,以获得更好的加工质量和更高的加工效率。在轨迹规划中,使用B样条曲线来平滑线性刀具路径并获得曲率平滑的轨迹,这是连续的三阶几何形状。因此,基于进给调度和有界多约束的线性编程算法提出了一种关于几何连续轨迹的时间最优方法,包括轴速度,轴加速度,轴轴和进给。此外,可以看出所提出的方法在Bang-Bang控制附近。为了减少最佳数值方法的计算时间,施加了围绕过渡B样条曲线周围的着眼窗口的有效方法。在插值阶段,提出了一种关于弧长的新型插值方法,以提高计算效率。最后,进行了仿真和实验,以显示所提出的方法的优势。结果表明,该方法的循环时间比G _(2)法减少了7%,具有更好的轮廓性能的方法和20%而不是G _(3)方法。

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