The Research of Hierarchy Assembly Semantic Model Based on Intelligent Assembly Process Planning

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Abstract:

Through analysis of Traditional CAD software modeling methods, combined with process planning requirements of intelligent virtual assembly, in the proposed semantic-based multi-level top-down model of virtual assembly. This paper proposes a semantic-based top-down model of multi-level virtual assembly.On this basis, the assembly semantic information extraction process is Focused analyzed, in the three-dimensional model data, non-geometric factors such as assorted features, assembly features, assembly engineering relations are extracted, and modeling is Established by Protégé ontology-based tool, the model is imported into the 3DVAPP(3D Virtual Assembly Process Planning) system to be verified, and Finally this paper implementated the assembly process planning applications such as intelligent parts identification, Provide a theoretical and practical basis for intelligent virtual assembly.

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Periodical:

Key Engineering Materials (Volumes 467-469)

Pages:

1933-1939

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Online since:

February 2011

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[1] Hou Wenjun, Yanyao Qi, Yao Fusheng. The assembly process planning system based on virtual technology [J]. Machine Design and Research, 2006, 22 (3) : 70-74.

Google Scholar

[2] Ding Bo, Sun Lijuan. Virtual assembly based on semantic feature modeling [J]. Computer Engineering, 2009, 35 (12): 12.

Google Scholar

[3] HAMIDULLAH, BOHEZ E, IRFAN, M A. Assembly Features: Definition, Classification, and Instantiation Emerging Technologies [C] ICET '06 International Conference on Emerging Technologies. Peshawar, Pakistan 2006: 617-623.

DOI: 10.1109/icet.2006.335941

Google Scholar

[4] Song Liping, Dian-Liang Wu, Xiu-Min Fan, et al. Complex products' assembly modeling techniques for the virtual assembly [J]. Shanghai Jiaotong University, 2007, 41 (1): 27-30.

Google Scholar

[5] Yang Hongjun, Ning Ruxin. The product assembly model supported top-down designing [J]. Modular Machine Tool & Automatic Manufacturing Technique, 2006 (7) : 99-102.

Google Scholar

[6] Yang Zhixiong, Qi Guoning, Gu Xinjian. Web parts library for mass customization [J]. Computer Integrated Manufacturing Systems, 2005, 11 (4): 541-547.

Google Scholar

[7] Li Xiangji. The research and application of Ontology-based virtual components' intelligent recognition method [D]. Beijing: Beijing University of Posts and Telecommunications, (2009).

Google Scholar