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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A real-time and look-ahead interpolation methodology with dynamic B-spline transition scheme for CNC machining of short line segments
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A real-time and look-ahead interpolation methodology with dynamic B-spline transition scheme for CNC machining of short line segments

机译:动态B样条过渡方案的实时,超前插补方法,用于短线段的CNC加工

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摘要

Tool path is presented as continuous small line segments in some existing NC machining programs. To achieve high machining speed and smooth machining quality, the tool path needs to be processed. This study presents a real-time and look-ahead interpolation methodology with dynamic B-spline transition scheme for short line segments machining. In the methodology, transition curve is adjusted to avoid intersection and keep high machining speed. Firstly, the unit length of every B-spline transition curve is calculated depending on tool path and NC system requirements; then, the maximum allowable velocity of the curve which is called threshold velocity can be got. Secondly, transition curve is determined according to the unit length and two consecutive threshold velocities, and time optimization function makes the transition curve take less machining time. Thirdly, the 7-phase velocity planning algorithm and static look-ahead algorithm are adopted to generate smooth machining feedrate and fine machining quality. Lastly, the curve interpolation is performed on the processed tool path. The simulations and experiments demonstrated that the proposed algorithm is able to achieve high machining speed and generate fine machining quality.
机译:在某些现有的NC加工程序中,刀具路径以连续的小线段表示。为了获得较高的加工速度和平滑的加工质量,需要对刀具路径进行加工。这项研究提出了一种动态的B样条过渡方案的实时和超前插值方法,用于短线段加工。在该方法中,调整过渡曲线以避免相交并保持较高的加工速度。首先,根据刀具轨迹和数控系统要求,计算出每条B样条过渡曲线的单位长度;然后,可以得到曲线的最大允许速度,称为阈值速度。其次,根据单位长度和两个连续的阈值速度确定过渡曲线,并且时间优化功能使过渡曲线占用更少的加工时间。第三,采用七阶段速度规划算法和静态超前算法来产生平稳的加工进给率和优良的加工质量。最后,在加工后的刀具路径上执行曲线插补。仿真和实验表明,该算法能够达到较高的加工速度,并产生良好的加工质量。

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