Recognizing manufacturing features from a design-by-feature model
Tài liệu tham khảo
1994
Chang, 1998
Kyprianou IK. Shape classification in computer-aided design. PhD thesis, University of Cambridge, UK, 1980.
Choi, 1984, Automatic recognition of machined surfaces from a 3D solid model, Computer-Aided Design, 16, 81, 10.1016/0010-4485(84)90164-7
Henderson MR. Extraction of feature information from three dimensional CAD data. PhD thesis, Purdue University, West Lafayette, 1984.
Joshi, 1988, Graph-based heuristics for recognition of machined from a 3D solid model, Computer-Aided Design, 20, 58, 10.1016/0010-4485(88)90050-4
Sakurai, 1990, Recognizing shape features in solid models, IEEE Computer Graphics and Applications, 10, 22, 10.1109/38.59033
Gao, 1998, Automatic recognition of interacting machining features based on minimal condition subgraph, Computer-Aided Design, 30, 727, 10.1016/S0010-4485(98)00033-5
Marefat, 1990, Geometric reasoning for recognition of three-dimensional object features, IEEE Transactions on Pattern Analysis and Machine Intelligence, 12, 949, 10.1109/34.58868
Han, 1998, Feature recognition from CAD models, IEEE Computer Graphics and Applications, 18, 80, 10.1109/38.656791
Regli WC. Geometric algorithm for recognition of features from solid models. PhD thesis, University of Maryland, College Park, MD, 1995.
Prabhakar, 1992, Automatic form-feature recognition using neural-network-based techniques on boundary representation of solid models, Computer-Aided Design, 24, 381, 10.1016/0010-4485(92)90064-H
Gu, 1995, Generic form feature recognition and operation selection using connectionist modelling, J. of Intelligent Manufacturing, 6, 263, 10.1007/BF00128649
Nezis, 1997, Recognizing 2 1/2 D shape features using a neural network and heuristics, Computer-Aided Design, 29, 523, 10.1016/S0010-4485(97)00003-1
Wang, 1998, Form feature recognition using convex decomposition: results presented at the 1997 ASME CIE Feature Panel Session, Computer-Aided Design, 30, 983, 10.1016/S0010-4485(98)00058-X
Woo, 1982, Feature extraction by volume decomposition, Proc. of Conference on CAD/CAM technology in Mechanical Engineering, Cambridge Mass., USA,, p., 76
Wang, 1990, Feature recognition for automated process planning, Proc. of the Manufacturing International Conference, ASME, New York, 49
Chamberlain, 1993, Protrusion-features handling in design and manufacturing planning, Computer-Aided Design, 25, 19, 10.1016/0010-4485(93)90062-S
Vandenbrande, 1993, Spatial reasoning for the automatic recognition of machinable features in solid models, IEEE Transactions on Pattern Analysis and Machine Intelligence, 15, 1269, 10.1109/34.250845
Sakurai, 1995, Volume decomposition and feature recognition: Part 1—polyhedral objects, Computer-Aided Design, 27, 833, 10.1016/0010-4485(95)00007-0
Sakurai, 1996, Volume decomposition and feature recognition: Part 2—curved objects, Computer-Aided Design, 28, 519, 10.1016/0010-4485(95)00067-4
Tseng, 1994, Recognizing multiple interpretations in 2.5D machining of pockets, Int. J. of Production Research, 32, 1063, 10.1080/00207549408956988
Yui, 2000, Process alternative generation from production geometric design data, IIE Transactions, 32, 71, 10.1080/07408170008963880
Laakko, 1993, Feature modelling by incremental recognition, Computer-Aided Design, 25, 479, 10.1016/0010-4485(93)90079-4
Martino, 1993
Han, 1995, Incremental recognition of machining features, Proc. of ASME Computers in Engineering Conference, 569
Lee, 1998, A feature-based approach to extracting machining features, Computer-Aided Design, 30, 1019, 10.1016/S0010-4485(98)00055-4
Lee, 1999, Generating alternative interpretations of machining features, Int. J. of Advanced Manufacturing Technology, 15, 38, 10.1007/s001700050037
Li WD, Ong SK, Nee AYC. An incremental interacting feature recognition approach based on design-by-feature. Proc. of 33rd MATADOR conference, 2000, Manchester, UK, p. 101–6.
Ong SK, Li WD, Nee AYC. STEP-based integration of feature recognition and design-by-feature for manufacturing applications in a concurrent engineering environment. Int. J. of Computer Applications in Technology—Special Issue on Applications in Industry of Product and Process Modelling Using Standards, to appear.
Li, 2000, Recognition of overlapping machining features based on hybrid artificial intelligence techniques, J. of Engineering Manufacture, Short Communications, Proc. of the Institution of Mechanical Engineers Part B, 214, 739, 10.1243/0954405001518107
ISO 10303-224, STEP Application Protocol 224: mechanical product definition for process planning using form features. Draft Standard (Edition 1), 1996.