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Automatic recognition and decomposition of rib features in thin-shell parts for mold flow analysis

机译:自动识别和分解薄壳零件中的肋骨特征以进行模具流动分析

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摘要

In mold flow analysis, for greater accuracy, convergence, and application specificity, it is beneficial to apply a hybrid combination of pyramidal, prismatic, and hexahedral meshes to replace traditional tetrahedral meshes. This, however, requires the recognition of specific features from the computer-aided design (CAD) model and decomposition into regions, so that high-quality meshes can be applied. The purpose of this study is to propose a rib recognition and decomposition algorithm for detecting all the types of ribs on thin-shell plastic parts, and decomposing them into rib regions. Conventional rib recognition methods emphasizing only the recognition of the constructing faces are not suitable for high-quality mesh generation, because they cannot provide sufficient information for region decomposition. We employ a concept of parallel pairs of edges to identify regions of regular shape on a rib structure. This not only recognizes the constructing faces, but also evaluates the constructing edges on each regular region. With the edge data on regular regions, the transition regions are recognized and the associated face and edge data are evaluated. This study focuses on the development of a feasible algorithm that can be used to deal with industrial CAD models with various kinds of geometric conditions. Several CAD examples are presented to demonstrate the feasibility of the proposed algorithm.
机译:在模流分析中,为了获得更高的准确性,收敛性和应用特异性,使用金字塔形,棱形和六面体网格的混合组合来替代传统的四面体网格是有益的。但是,这需要从计算机辅助设计(CAD)模型中识别特定特征并将其分解为区域,以便可以应用高质量的网格。这项研究的目的是提出一种肋骨识别和分解算法,用于检测薄壳塑料零件上所有类型的肋骨,并将它们分解为肋骨区域。仅强调构造面识别的常规肋骨识别方法不适用于高质量网格划分,因为它们不能为区域分解提供足够的信息。我们采用平行边对的概念来识别肋结构上规则形状的区域。这不仅识别构造面,而且评估每个规则区域上的构造边。利用规则区域上的边缘数据,可以识别过渡区域并评估相关的面部和边缘数据。这项研究的重点是开发一种可行的算法,该算法可用于处理具有各种几何条件的工业CAD模型。给出了几个CAD示例,以证明该算法的可行性。

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