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TECHNICAL PAPERS

A CAD/CAM Representation Model Applied to Tolerance Transfer Methods

[+] Author and Article Information
Alain Desrochers

Department of Mechanical Engineering, University of Sherbrooke, Sherbrooke, Quebec J1K 2R1, Canadae-mail: alain.desrochers@gme.usherb.ca

J. Mech. Des 125(1), 14-22 (Mar 21, 2003) (9 pages) doi:10.1115/1.1543974 History: Received January 01, 1999; Revised September 01, 2001; Online March 21, 2003
Copyright © 2003 by ASME
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References

Srikanth, K., Liou, F. W., and Balakrishnan, S. N., 1997, “Fuzzy Tolerance Analysis of 3-D Mechanical Assemblies,” Proceedings of the ASME Design Engineering Technical Conferences, paper DETC97/DAC-3769.
Srikanth, K., Liou, F. W., and Balakrishnan, S. N., 1998, “Automatic Tolerance Assignment Using Fuzzy Logic,” Proceedings of the ASME Design Engineering Technical Conferences, Atlanta, paper DETC98/DAC-5585.
Glancy, C. G., and Chase, K. W., 1999, “A Second-Order Method for Assembly Tolerance Analysis,” Proceedings of the ASME Design Engineering Technical Conferences, Las Vegas, paper DETC99/DAC-8707.
Adams, J. D., Gerbino, S., and Whitney, D. E., 1999, “Application of Screw Theory to Motion Analysis of Assemblies of Rigid Parts,” Proceedings of the IEEE International Symposium on Assembly and Task Planning, Porto, Portugal, pp. 75–80.
Ballot, E., Bourdet, P., and Thiébaut, F., 2001, “Determination of Relative Situations of Parts for Tolerance Computation,” Proceedings of the 7th CIRP International Seminar on Computer Aided Tolerancing, Paris, France, pp. 65–74.
Gaudet, P., Cloutier, G., and Fortin, C., 1999, “The Validation of a Process Plan by Propagated Dispersion Zones,” Global Consistency of Tolerances, van Houten, F., Kals, H., eds, Kluwer Academic Publishers, pp. 73–82.
Desrochers, A., and Delbart, O., 1998, “Determination of Part Position Uncertainty Within Mechanical Assembly Using Screw Parameters,” Geometric Design Tolerancing: Theories, Standards and Applications, ElMaraghy, H. A., ed., Chapman & Hall, pp. 185–196.
Irani,  S. A., Mittal,  R. O., and Lehtihet,  E. A., 1989, “Tolerance Chart Optimization,” Int. J. Prod. Res., 27(9), pp. 1531–1552.
Tang,  X. Q., and Davies,  B. J., 1988, “Computer Aided Dimensional Planning,” Int. J. Prod. Res., 26(2), pp. 283–297.
Ji,  P., Fuh,  J. Y. H., and Ahluwalia,  R. S., 1996, “A Digraphic Approach for Dimensional Chain Identification in Design and Manufacturing,” ASME J. Manuf. Sci. Eng., 118, pp. 539–544.
Ngoi,  B. K. A., and Seow,  M. S., 1996, “A Window Approach for Tolerance Charting,” Int. J. Prod. Res., 34(4), pp. 1093–1107.
Ngoi,  B. K. A., and Tan,  C. S., 1997, “Graphical Approach to Tolerance Charting-A “Maze Chart” Method,” International Journal of Advanced Manufacturing Technology, 13, pp. 282–289.
Ji,  P., 1994, “An Automatic Tolerance Assignment Approach for Tolerance Charting,” International Journal of Advanced Manufacturing Technology, 9, pp. 362–368.
Desrochers,  A., and Clément,  A., 1994, “A Dimensioning and Tolerancing Assistance Model for CAD/CAM Systems,” International Journal of Advanced Manufacturing Technology, 9, pp. 352–361.
Rivest, L., Desrochers, A., and Fortin, C., 1993, “Tolerance Modeling for 3D Analysis. Presenting a Kinematic Formulation,” Computer Aided Tolerancing, Eyrolles, pp. 51–74.
Desrochers,  A., and Rivière,  A., 1997, “A Matrix Approach to the Representation of Tolerance Zones and Clearances,” International Journal of Advanced Manufacturing Technology, 13, pp. 630–636.
Liu, J., and Wilhelm, R. G., 2001, “Genetic Algorithms for TTRS Tolerance Analysis,” Proceedings of the 7th CIRP International Seminar on Computer Aided Tolerancing, Paris, France, pp. 55–64.

Figures

Grahic Jump Location
(a) Design specification of a simple part, (b) Design specification TTRS tree
Grahic Jump Location
(a) Machining dimensions and tolerances for a simple part, (b) Process plan TTRS tree
Grahic Jump Location
TTRS tree with tolerance chart attributes
Grahic Jump Location
(a) Design specification for the test case part, (b) Design specification TTRS tree
Grahic Jump Location
Machining drawing for the test case

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