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Categorization of CAD models based on thin part identification

Communication avec acte
Auteur
GIANNINI, Franca
73335 Istituto di Matematica Applicata e Tecnologie Informatiche [IMATI-CNR]
PETTON, Cédric
ccPERNOT, Jean-Philippe
178374 Laboratoire des Sciences de l'Information et des Systèmes : Ingénierie Numérique des Systèmes Mécaniques [LSIS- INSM]

URI
http://hdl.handle.net/10985/11351
Date
2012

Résumé

Nowadays, industrial CAD models databases are becoming larger and larger, thus inaugurating new challenges for their management during the product design process. Unfortunately, neither the PDM nor PLM systems are good at indexing and sorting CAD models according to their content, and it is sometime more efficient to redesign a part than to try to find it in a database. Categorizing parts is a first step to solve this problem. This may allow both the re-use of the parts and the retrieval of the methods and pro- cesses adopted on them, thus avoiding wasting time restarting from scratch. In this paper, we focus on the characterization and classification of industrial parts with respect to the meshing issue, and notably the meshing of thin parts difficulty handled automati- cally and which often requires adaptation steps. The concepts of thin object and thin part are introduced together with the mechanisms and criteria used to identify such shape characteristics on CAD models. The final categorization results of a set of tests ex- ploiting a normalized distance distribution associat- ed to specific ratios computed from the bounding box surrounding the object to be classified. The proposed approach has been implemented and validated.

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LSIS-INSM_TMCE2012_Pernot_2012.pdf
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  • Laboratoire d’Ingénierie des Systèmes Physiques Et Numériques (LISPEN)

Documents liés

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  • Thin part identification for CAD model classification 
    Article dans une revue avec comité de lecture
    GIANNINI, Franca; PETTON, Cédric; ccPERNOT, Jean-Philippe (Emerald, 2015)
    Purpose – The purpose of this paper is to focus on the characterization and classification of parts with respect to the meshing issue, and notably the meshing of thin parts difficulty handled automatically and which often ...
  • 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 ...
  • Direct modification of semanticaly-enriched finite element meshes 
    Article dans une revue avec comité de lecture
    GIANNINI, Franca; FALCIDIENO, Bianca; MIKCHEVITCH, Alexei; MARC, Raphael; ccPERNOT, Jean-Philippe; ccLOU, Ruding; ccVERON, Philippe (World Scientific Publishing, 2010)
    Behaviour analysis loop is largely performed on virtual product model before its physical manufacturing. The last avoids high expenses in terms of money and time spent on intermediate manufacturing. It is gainful from the ...
  • Sharp edge filleting of enriched FE meshes 
    Communication avec acte
    GIANNINI, Franca; MIKCHEVITECH, Alexei; FALCIDIENO, Bianca; MARC, Raphael; ccPERNOT, Jean-Philippe; ccLOU, Ruding; ccVERON, Philippe (Delft University of Technology, 2012)
    Nowadays, the use of Computer-Aided Engineering (CAE) system in product design has become mainstream. However, the adopted process from Computer-Aided Design (CAD) product definition to numerical simulation could be further ...

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