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Skeleton Surface Generation from Volumetric Models of Thin Plate Structures for Industrial Applications

机译:从工业应用薄板结构的体积模型产生的骨架表面

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Computed Tomography (CT) is a powerful non-destructive measurement technology to generate cross-sectional X-ray images of objects, from which three-dimensional volumetric models can be constructed. In this study, we focus on industrial applications for X-ray CT in the analysis of thin plate structures, and propose in particular a method to generate sufficiently accurate skeleton meshes from a volumetric model of a thin plate structure. We use a geodesic-based skeletonization algorithm to extract skeleton cells, which can then be contoured to generate a skeleton surface. Since the thin plate structure has junctions, the skeleton surface is non-manifold around these areas. Because of this, the Marching Cubes algorithm is extended to enable handling of multiple labels (signs) to generate non-manifold meshes. The generated mesh is optimized to pass through the mid of the plate by interpolating mapping. Some experimental results for industrial samples are shown using our implemented prototype system, and it is proven that the accuracy of the generated mesh is sufficient for industrial applications.
机译:计算机断层扫描(CT)是一种强大的非破坏性测量技术,用于生成对象的横截面X射线图像,可以从中构建三维体积模型。在这项研究中,我们专注于X射线CT在薄板结构的分析中的工业应用,并且特别提出一种从薄板结构的体积模型产生足够精确的骨架网格的方法。我们使用基于测地的骨架化算法来提取骨架单元,然后可以轮廓成以产生骨架表面。由于薄板结构具有连接点,因此骨架表面是非歧管周围这些区域。因此,扩展了行程级别算法以使处理多个标签(符号)来生成非流形网格。所产生的网格被优化以通过插值映射通过板的中间。使用我们实现的原型系统显示了工业样品的一些实验结果,证明了所生成的网格的准确性足以用于工业应用。

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