Applied Composite Materials, ( ISI ), Volume (20), No (5), Year (2012-8) , Pages (761-772)

Title : ( Buckling of Cracked Laminated Composite Cylindrical Shells Subjected to Combined Loading )

Authors: Hamidreza Allahbakhsh , Mahmoud Shariati ,

Citation: BibTeX | EndNote

Abstract

A series of finite element analysis on the cracked composite cylindrical shells under combined loading is carried out to study the effect of loading condition, crack size and orientation on the buckling behavior of laminated composite cylindrical shells. The interaction buckling curves of cracked laminated composite cylinders subject to different combinations of axial compression, bending, internal pressure and external pressure are obtained, using the finite element method. Results show that the internal pressure increases the critical buckling load of the CFRP cylindrical shells and bending and external pressure decrease it. Numerical analysis show that axial crack has the most detrimental effect on the buckling load of a cylindrical shell and results show that for lower values of the axial compressive load and higher values of the external pressure, the buckling is usually in the global mode and for higher values of axial compressive load and lower levels of external pressure the buckling mode is mostly in the local mode.

Keywords

Crack . Laminated cylindrical shells . Buckling analysis . Internal and external pressure . Axial compression . Bending moment
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@article{paperid:1035255,
author = {Hamidreza Allahbakhsh and Shariati, Mahmoud},
title = {Buckling of Cracked Laminated Composite Cylindrical Shells Subjected to Combined Loading},
journal = {Applied Composite Materials},
year = {2012},
volume = {20},
number = {5},
month = {August},
issn = {0929-189X},
pages = {761--772},
numpages = {11},
keywords = {Crack . Laminated cylindrical shells . Buckling analysis . Internal and external pressure . Axial compression . Bending moment},
}

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%0 Journal Article
%T Buckling of Cracked Laminated Composite Cylindrical Shells Subjected to Combined Loading
%A Hamidreza Allahbakhsh
%A Shariati, Mahmoud
%J Applied Composite Materials
%@ 0929-189X
%D 2012

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