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Trimming of 3D solid finite element meshes using parametric surfaces: Application to sheet metal forming

机译:使用参数化曲面修剪3D实体有限元网格:应用于钣金成型

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In this paper we present a methodology for trimming 3D solid finite element meshes using a non-uniform rational B-spline (NURBS) surfaces representation. The algorithms applied in the identification of the spatial position of the finite element (FE) nodes and elements relative to the trimming surface are described, as well as, the explanation of the correction methods adopted to geometrically rearrange the trimmed elements. Three different strategies are proposed to adjust, with greater or lesser accuracy, the trimmed FE mesh to the trimming surface. The first consists only of an element elimination strategy, while the other two are based on a nodal stretching strategy, aiming for more accurate adjustment of the finite elements boundary to the trimming surface. Finally, to highlight the capabilities of the developed program, a mesh generation example is given by trimming a mesh with the shape of a blank automotive panel.
机译:在本文中,我们介绍了一种使用非均匀有理B样条(NURBS)曲面表示法修剪3D实体有限元网格的方法。描述了用于识别有限元(FE)节点和相对于修剪表面的元素的空间位置的算法,并解释了用于以几何方式重新排列修剪后的元素的校正方法。提出了三种不同的策略来以较高或较低的精度将修剪的有限元网格调整到修剪表面。第一个仅包含元素消除策略,而其他两个则基于节点拉伸策略,旨在更精确地调整有限元素边界到修剪表面。最后,为了突出已开发程序的功能,通过修剪具有空白汽车面板形状的网格,给出了网格生成示例。

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