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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Global tool-path smoothing for CNC machine tools with uninterrupted acceleration
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Global tool-path smoothing for CNC machine tools with uninterrupted acceleration

机译:用于CNC机床的全局工具路径平滑,不间断加速

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摘要

Majority of tool-paths for high-speed machining is composed of series of short linear segments, so-called G01 moves. This discrete tool-path format limits the achievable speed and accuracy of CNC machines. To generate continuous feed motion along sharp cornered tool-paths, most NC systems smooth corners locally using a pre-specified curve or a spline and slow down to be able to change the feed direction within machine kinematic limits. Path speed is dramatically reduced for accuracy if sharp corners are within close vicinity. This paper proposes a new real-time interpolation algorithm for NC systems to generate continuous rapid feed motion along short segmented linear tool-paths by smoothing local and adjacent corners that are within close vicinity. Instead of locally modifying the corner geometry with a spline, the proposed algorithm directly blends axis velocities between consecutive linear segments based on the jerk limited acceleration profile (JLAP) and generates cornering trajectories within user-specified contour errors and kinematic limits of the drives. A novel Look-Ahead Windowing (LAW) technique is developed to plan tangential feed profile with uninterrupted acceleration to continuously smooth the path. The feed profile is optimized to generate rapid motion along overlapping adjacent corners. Simulation and experimental results demonstrate effectiveness of the proposed method to interpolate accurate Cartesian high-speed motion along short-segmented tool-paths for machining free-form surfaces found in dies, molds and aerospace parts.
机译:高速加工的大部分工具路径由一系列短线性段组成,所谓的G01移动。这种离散的工具路径格式限制了CNC机器的可实现速度和准确性。为了沿着锐角的工具路径产生连续进料运动,大多数NC系统使用预先指定的曲线或花键本地平滑拐角,并减慢以便能够在机器运动限制内更改进料方向。如果尖角在近距离内,则路径速度显着降低。本文提出了一种新的NC系统的实时插值算法,通过平滑在附近的局部和相邻的角落,沿着短分割的线性工具路径产生连续快速进给运动。该算法而不是在用样条线本地修改角几何形状,而是基于Jerk限量加速度(JLAP)直接混合连续的线性段之间的轴速度,并在用户指定的轮廓错误和驱动器的运动范围内生成转弯轨迹。开发了一种新的展开窗口(法律)技术,以平衡切向进料轮廓,不间断地加速,以连续平滑路径。优化进料曲线以沿重叠的拐角产生快速运动。仿真和实验结果表明了沿着短分段工具路径内插入精确的笛卡尔高速运动的有效性,用于加工模具,模具和航空航天零件中的自由形状表面。

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