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Generalized evolutionary optimum design of fiber-reinforced tire belt structure

Authors :
S.B. Lee
K.W. Kim
Jaeha Lee
J.R. Cho
Source :
Steel and Composite Structures. 15:451-466
Publication Year :
2013
Publisher :
Techno-Press, 2013.

Abstract

This paper deals with the multi-objective optimization of tire reinforcement structures such as the tread belt and the carcass path. The multi-objective functions are defined in terms of the discrete-type design variables and approximated by artificial neutral network, and the sensitivity analyses of these functions are replaced with the iterative genetic evolution. The multi-objective optimization algorithm introduced in this paper is not only highly CPU-time-efficient but it can also be applicable to other multi-objective optimization problems in which the objective function, the design variables and the constraints are not continuous but discrete. Through the illustrative numerical experiments, the fiber-reinforced tire belt structure is optimally tailored. The proposed multi-objective optimization algorithm is not limited to the tire reinforcement structure, but it can be applicable to the generalized multi-objective structural optimization problems in various engineering applications.

Details

ISSN :
12299367
Volume :
15
Database :
OpenAIRE
Journal :
Steel and Composite Structures
Accession number :
edsair.doi...........f03e19225b46fffbc126748f5c5650d1