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首页> 外文期刊>Journal of Computing and Information Science in Engineering >Finite Element Method and Sharp Features Enhanced Laplacian for Interactive Shape Design of Mechanical Parts
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Finite Element Method and Sharp Features Enhanced Laplacian for Interactive Shape Design of Mechanical Parts

机译:机械零件交互式形状设计的有限元方法和敏锐特征增强的拉普拉斯算子

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摘要

Laplacian based model editing is one of the most popular shape modification methods for product design. However, most existing Laplacian based methods suffer shape structure and saliency feature distortion, which limits its possible application in shape design of mechanical parts. In this paper, to improve the mesh rigidity and to make the shape deforms physically, finite element method is employed to enhance the Laplacian based model editing, and to keep the saliency features, a robust sharp feature detecting method is further proposed for guiding the modification of the mesh Laplacian in shape deformation. We show how to utilize the enhanced Laplacian for interactive shape design of mechanical parts. The empirical results illustrate that the proposed method yield improved performance compared with conventional methods.
机译:基于拉普拉斯模型的模型编辑是产品设计中最流行的形状修改方法之一。但是,大多数现有的基于Laplacian的方法都存在形状结构和显着性特征变形的问题,这限制了其在机械零件的形状设计中的可能应用。为了提高网格的刚度并使其形状发生物理变形,本文采用有限元方法来增强基于拉普拉斯算子的模型编辑,并保持显着性,并提出了一种鲁棒的尖锐特征检测方法来指导修改。网格拉普拉斯算子的形状变形。我们展示了如何利用增强的拉普拉斯算子对机械零件进行交互式形状设计。实验结果表明,与传统方法相比,该方法具有更高的性能。

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