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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Guide curve based interpolation scheme of parametric curves for precision CNC machining
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Guide curve based interpolation scheme of parametric curves for precision CNC machining

机译:基于引导曲线的参数曲线插补方案,用于精密CNC加工

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摘要

Real-time parametric interpolation has played a key role in the computer control of machine tools. To achieve highest quality parts, generated trajectories not only describe the desired toolpath accurately, but also have smooth dynamics profiles. This paper presents a novel parametric interpolator based on guide curve. The relationships between geometric properties and kinematic properties are firstly discussed. Then, with a consideration of the important effect of the curvature of curvilinear path on the machining dynamics, a corresponding formula, which describes the relation of the maximum allowed feed acceleration/deceleration and the maximum allowed rate of change of curvature radius of paths, is built. Thus, based on a near arc parameterization and through modifying the curvature radius curve to deal with corners, key regions and other cases, adaptive feedrate schedule is completed according to the reconstructed smooth curvature radius curve. Consequently, confined chord errors, corners on the path and the acceleration/deceleration capabilities of the machine tool are simultaneously considered and incorporated into the guide curve based parametric interpolation system without using look-ahead scheme. Simulation results indicate the feasibility and precision of the proposed interpolation method.
机译:实时参数插值在机床的计算机控制中发挥了关键作用。为了获得最高质量的零件,生成的轨迹不仅准确地描述了所需的刀具路径,而且还具有平滑的动力学轮廓。本文提出了一种基于引导曲线的新型参数内插器。首先讨论了几何特性和运动特性之间的关系。然后,考虑到曲线轨迹的曲率对加工动力学的重要影响,相应的公式描述了最大允许进给加减速和最大允许轨迹曲率半径变化率之间的关系。内置的。因此,基于近弧参数化并通过修改曲率半径曲线以处理拐角,关键区域和其他情况,根据重构的平滑曲率半径曲线完成自适应进给率计划。因此,同时考虑有限的弦误差,路径上的拐角和机床的加速/减速能力,并将其合并到基于引导曲线的参数内插系统中,而无需使用超前方案。仿真结果表明了该插值方法的可行性和准确性。

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