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Arc-Length Parameterized NURBS Tool Path Generation and Velocity Profile Planning for Accurate 3-Axis Curve Milling

机译:弧长参数化NURBS刀具路径生成和速度轮廓规划,用于精确的3轴曲线铣削

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摘要

In modern industrial CNC (Computer Numerical Control) machining processes, the pursuing of higher accuracy and efficiency has always been one of the most important tasks to be discussed and studied. A lot of proposed algorithms are developed in order to optimize the machining performance in either of the above focused domains. Nevertheless, there is forever a trade-off between gaining less machining error and providing higher feed rate. As for machining a free-shaped curve (e.g., Bezier curves, B-splines and NURBS) in a three-dimensional space, a better manner to balance out the aforementioned trade-offs turns out to be even more critical and essential. udThe conventional iterative function used for tool path generation could cause feed rate fluctuation during the actual machining, and it thus might lead to failure on constraining the error within the machining accuracy requirement. Another potential problem occurs when the machining process comes across into a relatively high curvature segment with the prescribed high feed rate, due to the machine axial acceleration limit, the machine may not be able to maintain the tool tip trajectory within the error tolerance. Therefore, a new approach to NURBS tool path generation for high feed rate machining is proposed. In this work, several criterions are set for checking the viability of the prescribed feed rate and adjusting it according to the actual shape of the objective curve and the capability of the machine. After the offline feed rate viability check and readjustment, a new iterative algorithm based on the arc-length re-parameterized NURBS function would be implemented to calculate the tool path in real-time. udBy using this proposed method, the feed rate fluctuation is diminished and the overall efficiency of the machining process would have been optimized under the condition of accuracy guaranteed.ud
机译:在现代工业CNC(计算机数控)加工过程中,追求更高的精度和效率一直是要讨论和研究的最重要的任务之一。开发了许多建议的算法,以优化上述任一聚焦域中的加工性能。尽管如此,在获得更少的加工误差和提供更高的进给率之间始终存在一个权衡。对于在三维空间中加工自由形状的曲线(例如,贝塞尔曲线,B样条曲线和NURBS),一种更好的平衡上述折衷的方法显得更加关键和必要。 ud用于生成刀具路径的常规迭代功能可能会在实际加工过程中引起进给速度波动,因此可能会导致无法将误差限制在加工精度要求之内。当加工过程以规定的高进给率进入相对较高的曲率段时,由于机床轴向加速度的限制,机床可能无法将刀尖轨迹保持在误差范围内,从而出现另一个潜在的问题。因此,提出了一种用于高进给率加工的NURBS刀具路径生成的新方法。在这项工作中,设定了一些标准来检查指定进给速度的可行性,并根据目标曲线的实际形状和机器的性能对其进行调整。在离线进给率可行性检查和重新调整之后,将基于弧长重新参数化的NURBS函数实现一种新的迭代算法,以实时计算刀具路径。 ud通过使用这种建议的方法,可以减少进给速度波动,并且在保证精度的前提下可以优化加工过程的整体效率。

著录项

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    Li Yangtao;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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