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Repairing triangle meshes built from scanned point cloud

Article dans une revue avec comité de lecture
Auteur
MORARU, George
178374 Laboratoire des Sciences de l'Information et des Systèmes : Ingénierie Numérique des Systèmes Mécaniques [LSIS- INSM]
ccPERNOT, Jean-Philippe
199402 Laboratoire des Sciences de l'Information et des Systèmes [LSIS]
ccVERON, Philippe

URI
http://hdl.handle.net/10985/8328
DOI
10.1080/09544820701403797
Date
2007
Journal
Journal of Engineering Design

Résumé

The Reverse Engineering process consists of a succession of operations that aim at creating a digital representation of a physical model. The reconstructed geometric model is often a triangle mesh built from a point cloud acquired with a scanner. Depending on both the object complexity and the scanning process, some areas of the object outer surface may never be accessible, thus inducing some deficiencies in the point cloud and, as a consequence, some holes in the resulting mesh. This is simply not acceptable in an integrated design process where the geometric models are often shared between the various applications (e.g. design, simulation, manufacturing). In this paper, we propose a complete toolbox to fill in these undesirable holes. The hole contour is first cleaned to remove badly-shaped triangles that are due to the scanner noise. A topological grid is then inserted and deformed to satisfy blending conditions with the surrounding mesh. In our approach, the shape of the inserted mesh results from the minimization of a quadratic function based on a linear mechanical model that is used to approximate the curvature variation between the inner and surrounding meshes. Additional geometric constraints can also be specified to further shape the inserted mesh. The proposed approach is illustrated with some examples coming from our prototype software.

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Documents liés

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  • Filling holes in meshes using a mechanical model to simulate the curvature variation minimization 
    Article dans une revue avec comité de lecture
    MORARU, George; ccPERNOT, Jean-Philippe; ccVERON, Philippe (Elsevier, 2006)
    The presence of holes in a triangle mesh is classically ascribed to the de ciencies of the point cloud acquired from a physical object to be reverse engineered. This lack of information results from both the scanning process ...
  • Parts internal structure definition using lattice patterns optimization for mass reduction in additive manufacturing 
    Communication avec acte
    CHOUGRANI, Laurent; ABED, Stéphane; ccPERNOT, Jean-Philippe; ccVERON, Philippe (2016)
    With the rise of additive manufacturing, complex internal structure optimization is now a relevant topic. Additive manufacturing allows designers and engineers to go further in their modeling, designing and optimization ...
  • Direct modification of FE meshes preserving group information 
    Communication avec acte
    GIANNINI, Franca; MIKCHEVITECH, Alexei; ccVERON, Philippe; FALCIDIENO, Bianca; MARC, Raphael; ccPERNOT, Jean-Philippe; ccLOU, Ruding (Tools and Methods for Competitive Engineering (TMCE'10), 2010)
    Nowadays, the mainstream methodology for product behavior analysis and improvement relies on the fol-lowing steps: 1) conceptual solution proposal and CAD prototyping, 2) mesh model creation for Finite Element (FE) analysis, ...
  • Semantic-preserving mesh direct drilling 
    Communication avec acte
    GIANNINI, Franca; FALCIDIENO, Bianca; MIKCHEVITCH, Alexei; MARC, Raphael; ccPERNOT, Jean-Philippe; ccLOU, Ruding; ccVERON, Philippe (IEEE Computer Society, 2010)
    Advances in modeling of discrete models have allowed the development of approaches for direct mesh modeling and modification. These tools mainly focus on modeling the visual appearance of the shape which is a key criterion ...
  • Merging enriched Finite Element triangle meshes for fast prototyping of alternate solutions in the context of industrial maintenance 
    Article dans une revue avec comité de lecture
    MIKCHEVITCH, Alexei; ccPERNOT, Jean-Philippe; ccLOU, Ruding; ccVERON, Philippe (Elsevier, 2010)
    A new approach to the merging of Finite Element (FE) triangle meshes is proposed. Not only it takes into account the geometric aspects, but it also considers the way the semantic information possibly associated to the ...

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