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A practical approach to generating steepest ascent tool-paths for three-axis finish milling of compound NURBS surfaces

机译:为复合NURBS曲面的三轴精加工生成最陡的上升刀具路径的实用方法

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摘要

NURBS surfaces are commonly used in CAD/CAM software systems to represent the complex shapes of mechanical parts. Well-planned tool paths for machining the surfaces can significantly increase cutting efficiency and improve part quality. The steepest ascent tool-path pattern has been proposed for making sculptured surfaces in a 3-axis finish milling operation, and it has been proven that a steepest ascent tool-path is inherently more efficient in removing material to make these surfaces within tolerances than a tool path of any other type. However, the mathematical representation of steepest ascent paths on NURBS surfaces has not been addressed. In our work, simplified formulae of these paths are derived, and a comprehensive, efficient algorithm to plan steepest ascent tool-paths on compound NURBS surfaces is developed. To verify its validity and efficiency, this innovative approach is applied to a complicated compound surface. Furthermore, a comparison between the steepest ascent and CATIA tool-paths on two NURBS surfaces is conducted to demonstrate the advantages of the steepest ascent tool-paths for NURBS surface part production.
机译:NURBS曲面通常用于CAD / CAM软件系统中,以表示机械零件的复杂形状。精心设计的用于加工表面的刀具路径可以显着提高切削效率并改善零件质量。已经提出了在3轴精铣加工中制作雕刻表面的最陡的上升路径设计,并且已经证明,在去除材料以使这些表面在公差范围内的前提下,最陡的上升路径自然更有效。任何其他类型的刀具路径。但是,尚未解决NURBS表面上最陡的上升路径的数学表示。在我们的工作中,推导了这些路径的简化公式,并开发了一种全面,有效的算法来规划复合NURBS曲面上最陡的上升刀具路径。为了验证其有效性和效率,将这种创新方法应用于复杂的复合表面。此外,在两个NURBS曲面上最陡的上升路径与CATIA刀具路径之间进行了比较,以证明NURBS曲面零件生产中最陡的上升路径与刀具路径的优势。

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