Robust Mechanical Design Using Engineering Models

Author:

Parkinson A.1

Affiliation:

1. Dept. of Mechanical Engineering, Brigham Young University, Provo, UT 84602

Abstract

This paper examines how engineering models can be used to develop robust designs—designs that can tolerate variation. Variation is defined in terms of tolerances which bracket the expected deviation of model variables and/or parameters. Several methods for robust design are discussed. The method of transmitted variation is explained in detail and illustrated on a linkage design problem and a check valve design problem.

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference35 articles.

1. Balling R. J. , FreeJ. C., and ParkinsonA. R., 1986, “Consideration of Worst Case Manufacturing Tolerances in Design Optimization,” ASME Journal of Mechanisms, Transmissions and Automation in Design, Vol. 108, No. 4, p. 438438, Dec.

2. Bandler J. W. , 1974, “Optimization of Design Tolerances Using Nonlinear Programming,” Journal of Optimization Theory and Applications, Vol. 14, No. 1, pp. 99–113, July.

3. Box, G., and Fung, C., 1986, “Studies in Quality Improvement: Minimizing Transmitted Variation by Parameter Design,” Report #8 of the Center for Quality Improvement, University of Wisconsin, Feb.

4. Bjorke, O., 1989, Computer-Aided Tolerancing, ASME Press, New York.

5. Cox, N. E., 1986, Volume 11: How to Perform Statistical Tolerance Analysis, The ASQC Basic Reference in Quality Control: Statistical Techniques, J. Cornell and S. Shapiro, eds. This reference may be obtained by writing to ASQC, 230 W. Wells Str., Milwaukee, WI, 53203.

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