Integral attachment using snap‐fit features: a key to assembly automation. Part 5 ‐ a procedure to constrain parts fully and generate alternative attachment concepts

Author:

Genc Suat,Messler Robert W.,Gabriele Gary A.

Abstract

This fifth part of a comprehensive six‐part series of articles presents a systematic procedure for formalising the generation of alternative concepts for a particular design employing integral snap‐fit attachments. With the procedure, the alternatives generated are representative of the entire pertinent design space, since they include alternative attachment interface geometries, assembly procedures, attachment features, and constraint options for a particular application. The procedure is easy to use, effective and efficient, and results in a number of alternatives which are sufficient to represent the entire pertinent design space, but not so large as to preclude selection of a best concept using an optimisation method.

Publisher

Emerald

Subject

Industrial and Manufacturing Engineering,Control and Systems Engineering

Reference12 articles.

1. Dixon, J.R. and Poli, C. (1995, Engineering Design and Design for Manufacturing: A Structured Approach, Field Stone Publishers, Conway, MA.

2. Genc, S., Messler, R.W. Jr, and Gabriele, G.A. (1997a, “Generating alternative attachment concepts in integral snap‐fit assemblies”, Proceedings of the ICED’97, 11th International Conference on Engineering Design, Tampere, Finland, 19‐21 August, pp. 749‐52.

3. Genc, S., Messler, R.W. Jr, and Gabriele, G.A. (1997b, “Issues in locking feature selection in integral attachment using snap‐fits”, ANTEC ‘97, Society of Plastic Engineers, Toronto, Ontario, Canada, 27 April‐2 May 2.

4. Genc, S., Messler, R.W., Jr, and Gabriele, G.A. (1997c, “Methodology for locking feature selection in integral snap‐fit assembly”, Proceedings of the ASME 1997 Design Automation Conference (DAC), Sacramento, CA, 14‐17 September.

5. Genc, S., Messler, R.W., Jr, Bonenberger, P.R. and Gabriele, G.A. (1997d, “Enumerating possible design options for integral attachment using a hierarchical classification scheme”, ASME Trans., J. of Mechanical Design, Vol. 119 No. 2, pp. 178‐84.

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