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Recognition of virtual loops on 3D CAD models based on the B-rep model

机译:基于B-rep模型的3D CAD模型中虚拟环的识别

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Loops are critical elements in boundary representation (B-rep) models because they link all edges corresponding to a face. Loops can be used in feature recognition for identifying depressions or protrusions. In real 3D CAD models, however, features typically lie across multiple faces, which is beyond the data structure of current B-rep models. This study presents a virtual loop concept to account for all loop types used in CAD models, and develops algorithms for recognizing them. In accordance with the complexity of the recognition algorithm, this study defines three types of loop: single, virtual, and multivirtual. A single loop is the current loop recorded in the B-rep model. A virtual loop lies across faces that are at least G~1 continuous. Finally, a multivirtual loop lies across faces that are either G~0 or G~1 continuous. The proposed loop structure provides a more complete data structure for recognizing various types of features in feature-recognition modules. Several realistic CAD models are presented to confirm the feasibility of the proposed loop-recognition and feature-recognition methods.
机译:循环是边界表示(B-rep)模型中的关键元素,因为循环将对应于一个面的所有边链接在一起。循环可用于特征识别中以识别凹陷或凸起。但是,在实际的3D CAD模型中,特征通常跨越多个面,这超出了当前B-rep模型的数据结构。这项研究提出了一个虚拟循环概念,以解决CAD模型中使用的所有循环类型,并开发了识别它们的算法。根据识别算法的复杂性,本研究定义了三种类型的循环:单循环,虚拟循环和多虚拟循环。单循环是B-rep模型中记录的当前循环。一个虚拟循环跨越至少连续G〜1个面。最后,一个多虚拟循环位于连续的G〜0或G〜1的面上。所提出的循环结构提供了更完整的数据结构,用于识别特征识别模块中的各种类型的特征。提出了几种现实的CAD模型,以确认所提出的回路识别和特征识别方法的可行性。

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