An Optimization Method for Optimal Engineering Structure Design Combining Intelligent Optimization Algorithm and CAE Code

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Abstract:

This paper presents an optimization method for optimal engineering structure design. An interface procedure is essentially developed to combine the intelligent optimization algorithm and computer aided engineering (CAE) code. An optimization example is carried out to minimize the interlaminar normal stress of a laminate which affect the delamination failure of a laminate via arranging the stacking sequence. The analytical solution is calculated to validate the accuracy of optimization results.

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Periodical:

Advanced Materials Research (Volumes 399-401)

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2296-2300

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November 2011

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] ANSYS, 2003. Ansys Theory Reference Manual.

Google Scholar

[2] W J Peng,JQ Chen, et al., Journal of Composite Materials, Vol.45,No.2 (2011),p.237

Google Scholar

[3] Hassan R, Cohanim BK, Weck OD, Venter G. In Proceedings of the 46th AIAA/ASME/ASCE/AHS/ASC structures, structural dynamics and materials conference, Austin, TX;(2005)

DOI: 10.2514/6.2005-1897

Google Scholar

[4] Oguz Kayabasi, Bulent Ekici. Materials and Design ,Vol.28 (2007),p.2269

Google Scholar

[5] Hasan. International Journal of Impact Engineering, Vol.29 (2003), p.397

Google Scholar

[6] Wanglin. Intelligent optimization algorithm and the application (Tsinghua University Press, 2004)

Google Scholar

[7] Kennedy J, Eberhart R, Particle swarm optimization, in: IEEE International Conference Neural Networks, (1995),p.(1942)

Google Scholar

[8] Shi YH, Eberhart R. Evolut Prog VII, Lecture Notes Comput Sci, (1998),p.591

Google Scholar

[9] Jianqiao Chen, Wenjie Peng, Junhong Wei, Mingkai Gu. Chinese journal of solid mechanics, Vol.30,No.1 (2009),p.1

Google Scholar

[10] Lindemann J, Becker W. Composite Science and Technology, Vol.62, (2002) ,p.233

Google Scholar

[11] Pipes, R. B., and Pagano, N. J. Journal of Composite Materials, No.4,(1970), p.538

Google Scholar