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Technological processes design on the basis of part elements features

Authors: Deneux D., Maranzana R., Soenen R. Published: 07.10.2015
Published in issue: #3(20)/1995  

DOI:

 
Category: Production Automation  
Keywords:

Process planning of a given mechanical component depends on the part itself (topology, geometry, technology), the context (availability, capacity of production means) and the planner (knowledge, experience). It is shown that complete genericity of an automatic process planning system can be achieved by providing the facility to algorithmically extract low level, manufacturing knowledge free and parts-only dependent features (the tool features). The scope of feature extraction in advanced CAD/CAM systems is given at first. Then an original feature hierarchy is proposed compatible with current practices in process planning. This process automation is shown to be derived from tool features extraction and the subsequent ordering their atomic features into setup-features and machine features, with respect to the technological relationships among features, inherited from the functional dimensioning of the component. In the following, an accent is put on the tool-feature extraction methodology, presenting the current status of the prototype system PLANET and the future work is introduced.

References

[1] Foreman J.W. Gaining competitive advantage by using simultaneous engineering to integrate your engineering, design, and manufacturing resources // Proc. of the Conference at CASA/SME AUTOFAT’89, Detroit, USA, 1989.

[2] Deneu D. et al. Proposition d’une methodologie de generation automatique de gammes d’usinage basee sur l’interrogation objective d’un modele de produit homogene // MICAD’93. Paris, 1993.

[3] Grayer A.R. A computer link between design and manufacturing. Ph.D. thesis, University of Cambridge, MA, USA, 1976.

[4] Marks P. What do solids need? // Machine Design. - 1987. - No. 12.

[5] Shah J.J., Rogers M.T. Functional requirements and conceptual design of the feature-based modelling systems // Computer-Aided Engineering Journal. - 1988. - Vol. 5. - № 1.

[6] Van Houten F., Van’t Erve T. PART: a feature based computer aided process planning system // Revue international de CFAO et d’infographie. - 1992. - Vol. 7. - № 2.

[7] PRO/ENGINEER: concepts and capabilities. Parametric Technology Corporation, Waltham, MA, USA, 1987.

[8] Nieminen J. et al. Feature based design of joints // Proc. of Int. GI-IFIP Symposium, Production Technology Center, Berlin, FRG, 1989.

[9] Сосquebert E. et al. The functionalities: a continuous information flow between CAD and CAPP // Proc. of the Conference on Complex Machining Process Planning Using Artificial Intelligence. Gaussig, FRG, 1991.

[10] Mоnу С. Un modele d’integration des functions conception-fabrication dans l’ingenierie de produit. Ph.D. Thesis. Ecole Centrale de Paris, 1992.

[11] Kyprianou L. Shape classification in computer-aided design // Ph.D. Thesis, University of Cambridge, 1980.

[12] Prall M.J. Solid modelling and the interface between design and manufacturing // IEEE Computer Graphics and Applications. - 1984. - July.

[13] Henderson M.R. et al. Computer recognition and extraction of form features: a CAD/CAM link// Computers in Industry. - 1984. - № 5.

[14] Dong X. et al. FRAFES: a frame based feature extraction system // IEEE Computer Graphics and Applications. - 1988. - September.

[15] Сhuang S.H. et al. Three-dimensional shape pattern recognition using vertex classification and vertex-edge graphs // Computer-Aided Design. - 1990. - Vol. 22. - № 6.

[16] Ansaldi S. et al. Form feature representation and recognition in a hierarchical boundary model // Geometric Modelling for CAD Applications. - Amsterdam: Elsevier Science Publishers B.V., 1988.

[17] Joshi S., Chang Т.С. Graph based heuristics for recognition of machined features from a 3D solid model // Computer-Aided Design. 1988. - Vol. 20. - № 2.

[18] De Floriani L. et al. Building a feature-based object description from a boundary model // Computer-Aided Design. - 1989. - Vol. 21. - № 2.

[19] Padilla P. et al. Guide des fabrications mecaniques. Dunod, 1981.

[20] Deneux D. Methodologie de reconnaissance de caracteristiques d’usinage. Contribution a l’ingenierie simultanee. Ph.D. Thesis, University of Valenciennes, France, 1993.