首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Three-axis CNC machining feedrate scheduling based on the feedrate restricted interval identification with sliding arc tube
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Three-axis CNC machining feedrate scheduling based on the feedrate restricted interval identification with sliding arc tube

机译:基于进给电弧管的进给静态间隔识别的三轴CNC加工进给速度调度

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摘要

In the computer numerical control (CNC) machining for free form surfaces, the time-optimized and smooth feedrate profile plays an essential role in the high-speed and high-precision machining. For the traditional feedrate scheduling method (e.g., the “bang-bang” control method), there may be many fluctuations in the planned feedrate profile, especially in region of large curvature, which results in poor quality of machining surface. To address this issue, a novel concept called sliding arc tube (SAT) is proposed in this paper, from which the trajectory is partitioned as feedrate restricted intervals (FRIs) determining the target feedrate and the positions of tool acceleration and deceleration on the tool path. The SAT is built based on the local geometric information of tool paths. As the SAT is constructed in the tube-shaping process and then sliding on the tool path and finally blocked by it, the breaking point for generating the FRI is found on the trajectory curve. For the proposed FRI identification method, it is computational efficient and it can be implemented in the real-time manner in the CNC controller. Results from both simulation and real machining experiments validate that, with the proposed SAT, the FRIs can be precisely and efficiently identified for the given trajectory curve, the frequent acceleration and deceleration of machine tool is alleviated, and the machining quality can be improved in this way.
机译:在用于自由形状表面的计算机数控(CNC)加工中,时间优化和平滑的进给曲线在高速和高精度加工中起着重要作用。对于传统的进料调度方法(例如,“Bang-Bang”控制方法),计划的进料曲线可能存在许多波动,特别是在大曲率区域中,导致加工表面的质量差。为了解决这个问题,本文提出了一种名为滑动弧管(SAT)的新颖概念,从中划分为进给静态间隔(FRIS)的轨迹,从而确定刀具路径上的目标进给和刀具加速度和减速的位置。 SAT基于刀具路径的本地几何信息构建。当饱和在管成形过程中构造然后在刀具路径上滑动并且最终被其阻挡时,在轨迹曲线上发现用于产生Fri的断裂点。对于所提出的FRI识别方法,它是计算有效的,并且可以在CNC控制器中以实时方式实现。仿真和真实加工实验的结果验证,随着所提出的SAT,可以精确识别给定的轨迹曲线,减轻机床的频繁加速和减速,并且可以改善加工质量道路。

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