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A prototype of feature-based design for assembly

  • Design Methods
  • Conference paper
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Computer-Aided Cooperative Product Development (WCACPD 1989)

Abstract

This paper describes a prototype software system that implements a form of feature-based design for assembly. It is not an automated design system but instead a decision and design aid for designers interested in Concurrent Design. Feature-based design captures design intent (assembly topology, product function, manufacturing, or field use) while creating part and product geometry. Design for assembly as used here extends existing ideas about critiquing part shapes and part count to include assembly process planning, assembly sequence generation, assembly fixturing assessments, and assembly process costs. This work was primarily interested in identifying the information important to DFA tasks, and how that information could be captured using feature-based design. It was not intended to extend the state of the art in feature-based geometry creation, but rather to explore the uses of the information that can be captured. The prototype system has been programmed in LISP on Sun workstations. Its research contributions comprise integration of feature-based design with several existing and new assembly analysis and synthesis algorithms; construction of feature properties to meet the needs of those algorithms; a carefully chosen division of labor between designer and computer; and illustration of feature-based models of products as the information source for assembly analysis and process design. Some of its functions have been implemented approximately or partially but they give the flavor of the benefits to be expected from a fully functional system.

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Work supported through DARPA Contract MDA972-88-C-0027

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References

  1. Anon, “Requirements for Support of Form Features in a Solid Modeling System,” Final Report R-85-ASPP-01, CAM-i, Inc., Arlington, TX, 19851.

    Google Scholar 

  2. J. L. Nevins, D. E. Whitney, editors, Concurrent Design of Products and Processes, New York: McGraw-Hill, 1989.

    Google Scholar 

  3. E. Kroll, E. Lenz, J. R. Wolberg, “A Knowledge-based Solution to the Design for Assembly Problem,” Manufacturing Review, v1, #2, June, 1988, pp104–108.

    Google Scholar 

  4. M. R. Cutkosky, J. M. Tenenbaum, “CAD/CAM Integration Through Concurrent Process and Product Design,” ASME Symposium on Integrated and Intelligent Design, 1987.

    Google Scholar 

  5. R. D. Logcher and D. Sriram, “CAE Techniques for Distributed Design,” to be presented at Int'l Symposium on Building Economics and Construction Management, Sydney Australia, March, 1990.

    Google Scholar 

  6. S. C. Luby, J. R. Dixon, and M. K. Simmons, “Designing with Features: Creating and Using a Features Database for Evaluation of Manufacturability of Castings”. Proceedings of the International Computers in Mechanical Engineering Conference of the American Society of Mechanical Engineers, Chicago IL, August 1986. Reprinted in CIME Magazine, Vol.5, No. 3, November, 1986 pp. 25–33.

    Google Scholar 

  7. P. London, B. G. Hankins, S. C. Luby, and M. Sapposnek, “The Expert Cost and Manufacturability Guide: A customizable Expert System”, Proceedings of the International Computers in Mechanical Engineering Conference of the American Society of Mechanical Engineers, New York, NY, August 1987.

    Google Scholar 

  8. D. F. Baldwin, T. E. Abell, M-C M. Lui, T. L. De Fazio, D. E. Whitney, “An Integrated Computer Aid for Generating and Evaluating Assembly Sequences for Mechanical Parts,” submitted to IEEE J. Robotics and Automation.

    Google Scholar 

  9. R. E. Gustavson, “Design of Cost-Effective Assembly Systems,” SME Paper AD88-250, presented at Successful Planning and Implementation of Flexible Assembly Systems, March 29–31, 1988, Ann Arbor, MI.

    Google Scholar 

  10. M-C M. Lui, “Generation and Evaluation of Mechanical Assembly Sequences Using the Liaison Sequence Method,” MIT SM Thesis, ME Department, May, 1988.

    Google Scholar 

  11. G. Boothroyd and P. Dewhurst, Product Design for Assembly, Wakefield RI: Boothroyd and Dewhurst, Inc., 1987

    Google Scholar 

  12. J. Turner, “An M-Space Theory of Tolerances in Solid Modeling,” proceedings NSF Design and Manufacturing Systems Grantees Conference, Tempe AZ, January, 1990, published by SME.

    Google Scholar 

  13. S. Pappu, “A Dual Descent Algorithm for Finding the Optimal Test Strategy for an Assembly Sequence, MIT SM Thesis, Operations Research Center, May, 1989.

    Google Scholar 

  14. T. E. Abell, ”An Interactive Tool for Editing and Evaluating Mechanical Assembly Sequences Based on Fixturing and Orientation Requirements,” MIT SM Thesis, ME Department, 1989.

    Google Scholar 

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Duvvuru Sriram Robert Logcher Shuichi Fukuda

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© 1991 Springer-Verlag Berlin Heidelberg

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De Fazio, T.L. et al. (1991). A prototype of feature-based design for assembly. In: Sriram, D., Logcher, R., Fukuda, S. (eds) Computer-Aided Cooperative Product Development. WCACPD 1989. Lecture Notes in Computer Science, vol 492. Springer, Berlin, Heidelberg. https://doi.org/10.1007/BFb0014287

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  • DOI: https://doi.org/10.1007/BFb0014287

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  • Publisher Name: Springer, Berlin, Heidelberg

  • Print ISBN: 978-3-540-54008-3

  • Online ISBN: 978-3-540-47345-9

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