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Original Articles

Rule-based feature recognition for 2·5D machined components

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Pages 51-64 | Published online: 03 Apr 2007

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Read on this site (3)

Leila Zehtaban & Dieter Roller. (2016) Automated Rule-based System for Opitz Feature Recognition and Code Generation from STEP. Computer-Aided Design and Applications 13:3, pages 309-319.
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S. Borgia, S. Pellegrinelli, S. Petrò & T. Tolio. (2014) Network part program approach based on the STEP-NC data structure for the machining of multiple fixture pallets. International Journal of Computer Integrated Manufacturing 27:3, pages 281-300.
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HuikangK. Miao, Nandakumar Sridharan & JamiJ. Shah. (2002) CAD-CAM integration using machining features. International Journal of Computer Integrated Manufacturing 15:4, pages 296-318.
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Articles from other publishers (16)

Hongjin Wu, Ruoshan Lei, Yibing Peng & Liang Gao. (2024) AAGNet: A graph neural network towards multi-task machining feature recognition. Robotics and Computer-Integrated Manufacturing 86, pages 102661.
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PengYu Wang, Wen-An Yang & YouPeng You. (2023) A hybrid learning framework for manufacturing feature recognition using graph neural networks. Journal of Manufacturing Processes 85, pages 387-404.
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Tongming Xu, Jianxun Li & Zhuoning Chen. (2022) Automatic machining feature recognition based on MBD and process semantics. Computers in Industry 142, pages 103736.
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Tongming Xu, Junli Xue, Zhuoning Chen, Jianxun Li & Xuerui Jiao. (2022) A systematic method for automated manufacturability analysis of machining parts. The International Journal of Advanced Manufacturing Technology 122:1, pages 391-407.
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Yang Shi, Yicha Zhang & Ramy Harik. (2020) Manufacturing feature recognition with a 2D convolutional neural network. CIRP Journal of Manufacturing Science and Technology 30, pages 36-57.
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Xianzhi Zhang, Aydin Nassehi & Stephen T. Newman. (2013) Feature recognition from CNC part programs for milling operations. The International Journal of Advanced Manufacturing Technology 70:1-4, pages 397-412.
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Lian Ding, Dannie Davies & Christopher A. McMahon. (2009) The integration of lightweight representation and annotation for collaborative design representation. Research in Engineering Design 20:3, pages 185-200.
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Lian Ding, Dannie Davies & Christopher A. McMahon. (2008) The integration of lightweight representation and annotation for collaborative design representation. Research in Engineering Design 19:4, pages 223-238.
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Emmanuel Brousseau, Stefan Dimov & Rossitza Setchi. (2007) Knowledge acquisition techniques for feature recognition in CAD models. Journal of Intelligent Manufacturing 19:1, pages 21-32.
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S S Dimov, E B Brousseau & R Setchi. (2007) A hybrid method for feature recognition in computer-aided design models. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 221:1, pages 79-96.
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O. Coma, C. Mascle & P. Véron. (2003) Geometric and form feature recognition tools applied to a design for assembly methodology. Computer-Aided Design 35:13, pages 1193-1210.
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C. Zhang, K.W. Chan & Y.H. Chen. (1998) A hybrid method for recognizing feature interactions. Integrated Manufacturing Systems 9:2, pages 120-128.
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Faruk Cay & Constantin Chassapis. (1997) An IT view on perspectives of computer aided process planning research. Computers in Industry 34:3, pages 307-337.
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C. Zhang, K. W. Chan & Y. H. Chen. (1997) A method for recognising feature interactions and feature components within the interactions. The International Journal of Advanced Manufacturing Technology 13:10, pages 713-722.
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MC Wu & CR Lit. (1996) Analysis on machined feature recognition techniques based on B-rep. Computer-Aided Design 28:8, pages 603-616.
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R. Ganesan & V. Devarajan. (1994) FlexiCAD: an architecture for integrated product modeling and manufacture by features. FlexiCAD: an architecture for integrated product modeling and manufacture by features.

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