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A feature-based automatic broken surfaces fitting method for complex aircraft skin parts

机译:基于特征的飞机复杂蒙皮零件自动断面拟合方法

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Because of product design and digital model conversion between different computer-aided design (CAD) systems and computer-aided manufacturing (CAM) systems, a lot of broken surfaces are introduced in the digital models of aircraft skin parts, which have a great negative impact on numerical control (NC) programming efficiency. Broken surfaces fitting is an effective means to solve the above issues. The difficulties of broken surfaces fitting contain two aspects: (1) how to determine which ones of all the broken surfaces should be combined together automatically according to process requirements, and (2) how to obtain complete surface boundaries which could satisfy process requirements. In order to address the above difficulties, a feature-based automatic broken surfaces fitting method for complex aircraft skin parts is proposed in this paper. In contrast to traditional feature definition where broken surfaces and boundaries are restrained, while a novel feature definition method is introduced, where broken surfaces and boundaries are taken into account by considering adjacent relationship between surfaces. The broken surfaces which need to be fitted into one surface according to process requirements can be grouped automatically from all the broken surfaces by taking advantage of features definition and recognition. The broken surfaces fitting results show that the size, shape, and boundary of the fitted surfaces have good consistency with original surfaces, which could be directly used for NC programming, and it is expected to improve NC programming efficiency of skin parts dramatically.
机译:由于产品设计以及不同的计算机辅助设计(CAD)系统和计算机辅助制造(CAM)系统之间的数字模型转换,飞机皮肤部件的数字模型中引入了很多破损表面,这对负面影响很大关于数控(NC)编程效率的问题。破损的表面拟合是解决上述问题的有效手段。破损表面拟合的困难包括两个方面:(1)如何确定所有破损表面中的哪些应根据工艺要求自动组合在一起;(2)如何获得可以满足工艺要求的完整表面边界。为了解决上述困难,本文提出了一种基于特征的飞机复杂蒙皮零件自动断面拟合方法。与传统的特征定义方法不同,在这种方法中,限制了断面和边界,而引入了一种新颖的特征定义方法,该方法通过考虑曲面之间的相邻关系来考虑断面和边界。利用特征定义和识别功能,可以根据过程要求将需要装配到一个表面中的断裂表面从所有断裂表面中自动分组。断裂表面的拟合结果表明,所拟合表面的尺寸,形状和边界与原始表面具有良好的一致性,可以直接用于NC编程,并且有望显着提高皮肤零件的NC编程效率。

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