Hostname: page-component-8448b6f56d-tj2md Total loading time: 0 Render date: 2024-04-19T23:47:06.368Z Has data issue: false hasContentIssue false

Analyse de la conception d'un montage d'usinage à l'aide d'éléments modulaires

Published online by Cambridge University Press:  21 June 2007

Said Zirmi
Affiliation:
Laboratoire G-SCOP, BP 53, 38041 Grenoble Cedex 9, France
Henri Paris
Affiliation:
Laboratoire G-SCOP, BP 53, 38041 Grenoble Cedex 9, France
Idir Belaidi
Affiliation:
Laboratoire de productique, Université de Boumerdes, 35000 Boumerdes, Algérie
Get access

Abstract

Un montage d'usinage est un outillage indispensable pour fixer la pièce solidement à la bonne position dans l'espace de travail de la machine outil. La conception du montage d'usinage joue un rôle important pour obtenir une pièce usinée de bonne qualité. Nous avons déjà formalisé les connaissances sur les prises de pièce de manière à pouvoir les gérer tout au long du processus de conception de la gamme d'usinage. Maintenant nous nous intéressons à la conception du montage d'usinage de manière à passer du modèle prise de pièce retenu à la solution technologique qui sera utilisée sur le poste de travail. Cet article aborde le problème de conception du montage d'usinage modulaire du point de vue technologique dans sa globalité ; c'est-à-dire le choix et le placement des éléments technologiques en tenant compte de toutes les contraintes de qualité, d'accessibilité et de comportement mécanique du système pièce-montage d'usinage-outil de coupe durant l'usinage.

Type
Research Article
Copyright
© AFM, EDP Sciences, 2007

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

E. Caillaud, Modélisation des connaissances : aide à la conception des montages d'usinage, Thèse, Université de Bordeaux I, 1995
Hou, J.-L., Trappey, A.J.C., Computer-aided fixture design system for comprehensive modular fixtures, Int. J. Prod. Res. 39 (2001) 37033725 CrossRef
Li, J., Ma, W., Rong, Y., Fixturing surface accessibility analysis for automated fixture design, Int. J. Prod. Res. 37 (1999) 29973016 CrossRef
Tao, Z.J., Kumar, A.S., Nee, A.Y.C., A computational geometry approach to optimum clamping synthesis of machining fixtures, Int. J. Prod. Res. 37 (1999) 34953517 CrossRef
Xie, W., Choudhuri, S., Subramanian, V., De Meter, E.C., Trethewey, M.W., Experimental assessment of a clamp actuation intensity analysis model, Int. J. Prod. Res. 38 (2000) 46114633 CrossRef
Nee, A.Y.C., Kumar, A.S., Tao, Z.J., An intelligent fixture with a dynamic clamping scheme, Proc. Inst. Mech. Engrs. 214 (2000) 183196 CrossRef
Li, B., Melkote, S.N., Fixture clamping force optimisation and its impact on workpiece location accuracy, Int. J. Adv. Man. Tech. 17 (2001) 104113 CrossRef
Cecil, J., Clamping De, Asign Approach for Automated Fixture Design, Int. J. Adv. Man. Tech. 18 (2001) 784789 CrossRef
Cecil, J., Computer-Aided Fixture Design, A Review and Future Trends, Int. J. Adv. Man. Tech. 18 (2001) 790793 CrossRef
Wu, Y., Rong, Y., Ma, W., LeClair, S.R., Automated modular fixture planning: geometric analysis, Rob. Comp. Int. Man. 14 (1998) 115 CrossRef
Kumar, A.S., Subramaniam, V., Seow, K.C., Conceptual Design of Fixtures using Genetic Algorithms, Int. J. Adv. Man. Tech. 15 (1999) 7984
Rong, Y., Hu, W., Kang, Y., Zhang, Y., Yen, D.W., Locating error analysis and tolerance assignment for computer-aided fixture design, Int. P. Prod. Res. 39 (2001) 35293545 CrossRef
Kumar, A.S., Fuh, J.Y.H., Kow, T.S., An automated design and assembly of interference-free modular fixture setup, Computer-Aided Design 32 (2000) 583596 CrossRef
Hu, W., Rong, Y., A fast interference checking algorithm for automated fixture design verification, Int. J. Adv. Man. Tech. 16 (2000) 571581 CrossRef
Liao, Y.G., An, S.J. Hu integrated model of a fixture–workpiece system for surface quality prediction, Int. J. Adv. Man. Tech. 17 (2001) 810818 CrossRef
Wang, M.Y., Pelinescu, D.M., Contact force prediction and force closure analysis of a fixtured rigid workpiece with friction, J. Man. Sc. and Eng. 125 (2003) 316324 CrossRef
H. Paris, D. Brissaud, Integration of the machining point of view in the product modelling: the fixuring features, in Integrated Design and Manufacturing in Mechanical Engineering, Kluwer Academic Publishers, ed. Chedmail, Bocquet, Dornfeld, 1997, ISBN 0-7923-4739-O, IDMME conference, Nantes, May 1996, pp. 121–130
Paris, H., Brissaud, D., Process planning strategy based on fixturing indicators evaluation, Int. J. Adv. Man. Tech. 25 (2005) 913922 CrossRef
H. Paris, A. Voisin, Estimate of workpiece deformations while machining in a process planning Context, in 3rd International Conference on Integrated Design and Manufacturing in Mechanical Engineering, IDMME'2000, Montréal 17–19 May 2000, Presses Internationales Polytechnique, ed. C. Mascle, C. Fortin, J. Pegna, 2000