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Smooth surface meshing for automated finite element model generation from 3D image data

机译:平滑的表面网格划分,可根据3D图像数据自动生成有限元模型

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Finite element (FE) modelling based on data from three-dimensional high-resolution computed tomography (CT) imaging systems provides a non-invasive method to assess structural mechanics. Automated mesh generation from these voxel based image data can be achieved by direct conversion to hexahedron elements, however these model representations have jagged edges. This paper proposes an automated method to generate smoothed FE meshes from voxel-based image data. Mesh fairing processes are utilized that allow constraints that control the smoothing process, and are computationally efficient. Surfaces of the mesh on the exterior, as well as interfaces between two tissues, can be smoothed by varying fairing parameters and constraint criteria. The method was tested on a variety of real and simulated three-dimensional data sets, resulting in both hexahedron and tetrahedron meshes. It was shown that the fairing process is linearly related to the number of smoothing iterations, and that peak stresses are reduced in FE simulations of the smoothed models. Although developed for micro-CT data sets, this fast and reliable mesh smoothing method could be applied to any three-dimensional image data where node and element connectivity have been defined. (c) 2005 Elsevier Ltd. All rights reserved.
机译:基于来自三维高分辨率计算机断层扫描(CT)成像系统的数据的有限元(FE)建模提供了一种评估结构力学的非侵入性方法。通过直接转换为六面体元素,可以从这些基于体素的图像数据自动生成网格,但是这些模型表示具有锯齿状的边缘。本文提出了一种自动方法,可以从基于体素的图像数据生成平滑的有限元网格。利用网格修整过程,该过程允许约束条件控制平滑过程,并且计算效率高。外部的网格表面以及两个组织之间的界面可以通过更改整流罩参数和约束条件进行平滑处理。该方法在各种真实和模拟的三维数据集上进行了测试,生成了六面体和四面体网格。结果表明,整流罩过程与平滑迭代次数线性相关,并且在平滑模型的有限元模拟中峰值应力降低了。尽管是为微型CT数据集开发的,但这种快速而可靠的网格平滑方法可以应用于已定义节点和元素连接性的任何三维图像数据。 (c)2005 Elsevier Ltd.保留所有权利。

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