Optimized Design of Friction Clutch for Maximum Torque Transmitting Capacity Using Uniform Pressure Theory

Author:

Agrawal Animesh1,Jeet Chandra1,Jaiswal Siddharth1

Affiliation:

1. CSVTU

Abstract

: Optimization is the art of obtaining the best results under given circumstances. In design, construction and maintenance of any engineering system, the ultimate goal is either to minimize the effort required or to maximize the desired benefits. The various processes of optimization come under the subject Operation Research (O.R.). O.R. one of the branch of mathematics which is concerned which the application of scientific methods and techniques to design making problems and establishing optimal situations. In this project we aim to find the optimum design of a hydrodynamics bearing through operations research techniques. The two methods used are stochastic programming and geometric programming. The existing design procedure treats design variables as deterministic ones. In actual practice due to manufacturing tolerances etc. design variables do not remain deterministic but become probabilistic. The probabilistic nature of these should be given proper consideration while designing. This project deals with an approach which takes into account the probabilistic nature of designs variables, as well as probability of satisfying constraint equations. Stochastic signomial geometric programming has been used for optimization.

Publisher

Trans Tech Publications, Ltd.

Reference13 articles.

1. D. Dowson, G.N. Blount, J.N. Ashton Optimization Methods Applied to Hydrodynamic Bearing Design, International Journal for Numerical Methods in Engineering, Vol-11, PP. 1005-1027(1977).

2. G.K. Agrawal Optimal Design of Helical Springs for Minimum Weight by Geometric Programming, the American Society of Mechanical Engineers, 78-WA/DE-1.

3. S.V. Kulkarni, K. Balasubrahmanyam"Optimal Design of Open Coiled Helical Spring", Semi Annual Paper Meeting Held at Jamshedpur on July 22 1979, Vol-60, PP-7-14.

4. M.O.A. Mokhtar"Floating Ring Journal Bearings: Theory, Design and Optimization" Tribology International April 1981, PP. 113-119.

5. Dhande S.G., Kale T.G. Optimal Design of Disc Cam Mechanisms, Proceedings of the Sixth World Congress on Theory of Machines and Mechanisms-1983, PP-1195-1199.

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