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Decomposing complex thin-walled CAD models for hexahedral-dominant meshing

机译:分解复杂的薄壁CAD模型,适用于六面体占主导地位的啮合

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This paper describes an automatic method for identifying thin-sheet regions (regions with large lateral dimensions relative to the thickness) for complex thin-walled components, with a view to using this information to guide the hexahedral (hex) meshing process. This fully automated method has been implemented in a commercial CAD system (Siemens NX) and is based on the interrogation and manipulation of face pairs, which are sets of opposing faces bounding potential thin-sheet regions. Careful consideration is given to the mapping, merging and intersection of face pairs to generate topologies suitable for sweep meshing the thin-sheet regions, and for treating the junctions between adjacent thin-sheet regions. It is proposed that hex meshes be applied to thin-sheet regions by quad meshing one of the faces bounding the thin-sheet region and sweeping it through the thickness to create hex elements. Decisions on the generation and positioning of the cutting surfaces required to isolate thin-sheet regions are made by considering the likely impact on the quality of the resulting mesh. The method delivers a substantial step towards automatic hex meshing for complex thin-walled geometries. A significant reduction of the degrees of freedom (DOF) can be achieved by applying anisotropic hex elements to the identified thin sheet regions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种用于识别薄板区域(相对于厚度的横向尺寸的区域)的自动方法,用于复杂的薄壁部件,以使用该信息来引导六面向运动(十六进制)啮合过程。这种全自动化方法已经在商业CAD系统(西门子NX)中实现,并且基于面对的询问和操纵,这是边界势薄板区域的相对面。仔细考虑面对的映射,合并和交叉点,以产生适合于扫描薄板区域的扫描的拓扑,以及处理相邻薄板区域之间的连接。提出,六角网通过四边形啮合的薄片区域施加到薄片区域,并通过薄板区域横穿厚度将其扫过以产生六角形元件。通过考虑对所得网格质量的可能影响来制备关于隔离薄板区域所需的切割表面的产生和定位的决定。该方法为复杂薄壁几何形状的自动六角啮合提供了大量的步骤。通过将各向异性六角元素施加到所识别的薄板区域,可以实现自由度(DOF)的显着降低。 (c)2017 Elsevier Ltd.保留所有权利。

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