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Publication Date:
December 2011
ISSN:
2191-0359
DOI:
10.1515/SECM.2011.046

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Editor-in-Chief: Hoa, Suong V.

Editorial Board Member: Rand, Omri / Hamada, Hiroyuki / Brandt, Andrzej M. / Ehrenstein, Gottfried Wilhelm / Hui, David L. / Lee, L. James / Medraj, Mamoun / Nakai, Asami / Nicolais, Luigi / Seferis, James C. / Tan, Kiang Hwee / Ton-That, Minh Tan / Xiao, Xinran / Zako, Masaru / Zhong, W.H. Katie

4 Issues per year

Increased IMPACT FACTOR 2011: 0.178

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Assuring life in composite systems

1Research and Technology Directorate, NASA Glenn Research Center, Cleveland, OH 44135, USA

Corresponding author

Citation Information: Science and Engineering of Composite Materials. Volume 18, Issue 4, Pages 231–240, ISSN (Online) 2191-0359, ISSN (Print) 0792-1233, DOI: 10.1515/SECM.2011.046, December 2011

Abstract

A computational simulation method is presented to assure life in composite systems by using dynamic buckling of smart composite shells as an example. The combined use of composite mechanics, finite element computer codes, and probabilistic analysis enable the effective assessment of the dynamic buckling load of smart composite shells. A universal plot is generated to estimate the dynamic buckling load of composite shells at various load rates and probabilities. The shell structure is also evaluated with smart fibers embedded in the plies right below the outer plies. The results show that, on the average, the use of smart fibers improved the shell buckling resistance by about 10% at different probabilities and delayed the buckling occurrence time. The probabilistic sensitivities results indicate that uncertainties in the fiber volume ratio and ply thickness have major effects on the buckling load. The uncertainties in the electric field strength and smart material volume fraction have moderate effects and thereby in the assured life of the shell.

Keywords: dynamic buckling; finite elements; integrated modules; smart material; uncertainties effects

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