類似部分形状検索を用いた解析モデル再利用型メッシュ自動生成技術の開発

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Published in日本機械学会論文集 Vol. 83; no. 853; p. 17-00073
Main Authors 小野寺, 誠, 針谷, 昌幸, 金剛, 力, 新谷, 政樹, 何, 祺
Format Journal Article
LanguageJapanese
Published 一般社団法人 日本機械学会 2017
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Author 何, 祺
小野寺, 誠
針谷, 昌幸
新谷, 政樹
金剛, 力
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  fullname: 針谷, 昌幸
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  fullname: 金剛, 力
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  fullname: 新谷, 政樹
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  fullname: 何, 祺
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References Ito, Y., Shih, A.M., Erukala, A.K., Soni, B.K., Chernikov, A., Chrisochoides, N.P. and Nakahashi, K., Parallel unstructured mesh generation by an advancing front method, Mathematics and Computers in Simulation, Vol.75, No.5 (2007), pp.200-209.
Sakamoto, S., Review of articles on simulation and optimization, Journal of the Japan Society of Applied Electromagnetics and Mechanics, Vol.22, No.1 (2014), pp.1-6 (in Japanese).
Biasotti, S., Marini, S., Spagnuolo, M. and Falcidieno, B., Sub-part correspondence by structural descriptors of 3D shapes, Computer-Aided Design, Vol.38, No.9 (2006), pp.1002-1019.
Onodera, M., Hariya, M., Hiro, Y.,Kongo, C. and Shintani, M., Development of similar sub-part recognition technique for 3D-CAD Model described by boundary representation, Proceedings of 25th Design & Systems Conference (2015) (in Japanese).
Gunn, T.G., The mechanization of design and manufacturing, Scientific American, Vol.247, No.3 (1982), pp.114-30.
Nagaya, M., Katayama, K. and Ishikawa, H., Application of Cauchy’s interlace theorem to subgraph isomorphism detection for large graphs, Proceeding of Data Engineering Workshop (2006) (in Japanese).
Onodera, M., Nishigaki, I., Hiro, Y. and Kongo, C., Development of parametric mesh morphing technique, Transactions of the Japan Society of Mechanical Engineers, Series C, Vol.74, No.742 (2008), pp. 1594-1601 (in Japanese).
You, C. and Tsai, Y., 3D solid model retrieval for engineering reuse based on local feature correspondence, The International Journal of Advanced Manufacturing Technology, Vol.46 (2009), pp.649-661.
Fleischmann, P. and Selberherr, S., Three dimensional delaunay mesh generation using a modified advancing front approach, Proceedings of the 6th international Meshing Roundtable (1997), pp.267-278.
Ullmann, J.R., An algorithm for subgraph isomorphism, Journal of the Association for Computing Machinery, Vol.23, No.1 (1976), pp.31-42.
Iyer, N., Jayanti, S. and Lou, K., Kalyanaraman, Y. and Ramani, K., Three-dimensional shape searching: state-of-the-art review and future trends, Computer-Aided Design, Vol.37, No.5 (2005), pp.509-530.
Onodera, M., Development of existing mesh fitting technique for newly designed CAD-data, Transactions of the JSME (in Japanese), Vol.81, No.832 (2015), DOI:10.1299/transjsme.15-00276.
Kataoka, I., News of mesh generation and CAE workshop, Industrial and Applied Mathematics, Vol.21, No.1 (2011), p.64 (in Japanese).
Bommes, D., Levy, B., Pietroni, N., Puppo, E., Silva, C., Tarini, M. and Zorin, D., Quad‐mesh generation and processing: A survey, Computer Graphics Forum, Vol.32, No.6 (2013), pp.51-76.
Osada, R., Funkhouser, T., Chazelle, B. and Dobkin, D., Shape distributions, ACM Transactions on Graphics, Vol.21, No.4 (2002), pp.807-832.
El-Mehalawi, M. and Millerb, R., A database system of mechanical components based on geometric and topological similarity. PartI: representation, Computer-Aided Design, Vol.35, No.1 (2003), pp.83-94.
Cordella, L.P., Foggia, P., Sansone, C. and Vento, M., An improved algorithm for matching large graphs, Proceedings of the 3rd Technical Committee #15 of the International Association for Pattern Recognition Workshop on Graph-based Representations in Pattern Recognition (2001), pp.149-159.
Ohbuchi, R., Minamitani, T. and Takei, T., Shape similarity search of 3D models by using enhanced shape functions, Proceedings of the Theory and Practice of Computer Graphics, (2003), pp.97-104.
Yamauchi, Y., Michikawa, T., Suzuki, H., Ohta, E., Hashima, M. and Sato, Y., A study on partial matching for CAD meshes, Proceedings of Japan Society for Precision Engineering (2011), pp.293-294 (in Japanese).
References_xml – reference: Fleischmann, P. and Selberherr, S., Three dimensional delaunay mesh generation using a modified advancing front approach, Proceedings of the 6th international Meshing Roundtable (1997), pp.267-278.
– reference: Yamauchi, Y., Michikawa, T., Suzuki, H., Ohta, E., Hashima, M. and Sato, Y., A study on partial matching for CAD meshes, Proceedings of Japan Society for Precision Engineering (2011), pp.293-294 (in Japanese).
– reference: You, C. and Tsai, Y., 3D solid model retrieval for engineering reuse based on local feature correspondence, The International Journal of Advanced Manufacturing Technology, Vol.46 (2009), pp.649-661.
– reference: Ito, Y., Shih, A.M., Erukala, A.K., Soni, B.K., Chernikov, A., Chrisochoides, N.P. and Nakahashi, K., Parallel unstructured mesh generation by an advancing front method, Mathematics and Computers in Simulation, Vol.75, No.5 (2007), pp.200-209.
– reference: Ohbuchi, R., Minamitani, T. and Takei, T., Shape similarity search of 3D models by using enhanced shape functions, Proceedings of the Theory and Practice of Computer Graphics, (2003), pp.97-104.
– reference: Sakamoto, S., Review of articles on simulation and optimization, Journal of the Japan Society of Applied Electromagnetics and Mechanics, Vol.22, No.1 (2014), pp.1-6 (in Japanese).
– reference: Kataoka, I., News of mesh generation and CAE workshop, Industrial and Applied Mathematics, Vol.21, No.1 (2011), p.64 (in Japanese).
– reference: El-Mehalawi, M. and Millerb, R., A database system of mechanical components based on geometric and topological similarity. PartI: representation, Computer-Aided Design, Vol.35, No.1 (2003), pp.83-94.
– reference: Ullmann, J.R., An algorithm for subgraph isomorphism, Journal of the Association for Computing Machinery, Vol.23, No.1 (1976), pp.31-42.
– reference: Osada, R., Funkhouser, T., Chazelle, B. and Dobkin, D., Shape distributions, ACM Transactions on Graphics, Vol.21, No.4 (2002), pp.807-832.
– reference: Nagaya, M., Katayama, K. and Ishikawa, H., Application of Cauchy’s interlace theorem to subgraph isomorphism detection for large graphs, Proceeding of Data Engineering Workshop (2006) (in Japanese).
– reference: Bommes, D., Levy, B., Pietroni, N., Puppo, E., Silva, C., Tarini, M. and Zorin, D., Quad‐mesh generation and processing: A survey, Computer Graphics Forum, Vol.32, No.6 (2013), pp.51-76.
– reference: Onodera, M., Development of existing mesh fitting technique for newly designed CAD-data, Transactions of the JSME (in Japanese), Vol.81, No.832 (2015), DOI:10.1299/transjsme.15-00276.
– reference: Iyer, N., Jayanti, S. and Lou, K., Kalyanaraman, Y. and Ramani, K., Three-dimensional shape searching: state-of-the-art review and future trends, Computer-Aided Design, Vol.37, No.5 (2005), pp.509-530.
– reference: Biasotti, S., Marini, S., Spagnuolo, M. and Falcidieno, B., Sub-part correspondence by structural descriptors of 3D shapes, Computer-Aided Design, Vol.38, No.9 (2006), pp.1002-1019.
– reference: Gunn, T.G., The mechanization of design and manufacturing, Scientific American, Vol.247, No.3 (1982), pp.114-30.
– reference: Cordella, L.P., Foggia, P., Sansone, C. and Vento, M., An improved algorithm for matching large graphs, Proceedings of the 3rd Technical Committee #15 of the International Association for Pattern Recognition Workshop on Graph-based Representations in Pattern Recognition (2001), pp.149-159.
– reference: Onodera, M., Hariya, M., Hiro, Y.,Kongo, C. and Shintani, M., Development of similar sub-part recognition technique for 3D-CAD Model described by boundary representation, Proceedings of 25th Design & Systems Conference (2015) (in Japanese).
– reference: Onodera, M., Nishigaki, I., Hiro, Y. and Kongo, C., Development of parametric mesh morphing technique, Transactions of the Japan Society of Mechanical Engineers, Series C, Vol.74, No.742 (2008), pp. 1594-1601 (in Japanese).
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SubjectTerms Analytical model
CAE
Computational geometry
Mesh generation
Similar subpart search
Title 類似部分形状検索を用いた解析モデル再利用型メッシュ自動生成技術の開発
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