Interpolation of NURBS Surfaces by Using the Extended Branch Structure of Basis Functions

S. Yeh, Shin-Chun Su
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Abstract

This paper focuses on the design of the extended branch structure for rapidly and simultaneously interpolating non-uniform rational B-spline (NURBS) surfaces and their partial derivatives on CNC machines. NURBS surfaces are concerned in the applications of molding process. However, the copious and complicated operations usually limit the applications of NURBS surfaces in CNC machining systems. In this paper, by considering the derivatives of basis functions, an extended branch structure is derived such that the computation time can be significantly reduced in computing NURBS surfaces and their partial derivatives. According to the machining results on a 3-axis vertical machining center, the extended branch structure is feasible to implement on CNC machines and is more efficient than existing approaches in computation.
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基于基函数扩展分支结构的NURBS曲面插值
本文研究了在数控机床上快速同时插补非均匀有理b样条曲面及其偏导数的扩展分支结构的设计。NURBS曲面在成型工艺中的应用备受关注。然而,NURBS曲面的大量和复杂的操作限制了其在数控加工系统中的应用。本文通过考虑基函数的导数,推导出一种扩展分支结构,使得NURBS曲面及其偏导数的计算时间大大减少。在三轴立式加工中心上的加工结果表明,该扩展分支结构在数控机床上实现是可行的,且计算效率高于现有方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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