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contributor authorChee‐Kiong Chin
contributor authorFaris G. A. Al‐Bermani
contributor authorSritawat Kitipornchai
date accessioned2017-05-08T20:55:03Z
date available2017-05-08T20:55:03Z
date copyrightApril 1993
date issued1993
identifier other%28asce%290733-9445%281993%29119%3A4%281048%29.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/31670
description abstractA finite element method using thin‐plate elements is presented. The method is capable of predicting the buckling capacity of arbitrarily shaped thin‐walled structural members under any general load and boundary conditions. The linear and geometric stiffness matrices for the thin‐plate element are derived explicitly based on the principle of minimum total potential energy, thereby eliminating the need for numerical integration. The proposed plate element contains 30 degrees of freedom (dof): 14 dof for the in‐plane (membrane) action and 16 dof for the out‐of‐plane (bending) action. Several numerical examples of thin‐walled structural members involving local, distortional, and flexural‐torsional buckling failure modes are presented to demonstrate the accuracy, efficiency, and versatility of the method.
publisherAmerican Society of Civil Engineers
titleFinite Element Method for Buckling Analysis of Plate Structures
typeJournal Paper
journal volume119
journal issue4
journal titleJournal of Structural Engineering
identifier doi10.1061/(ASCE)0733-9445(1993)119:4(1048)
treeJournal of Structural Engineering:;1993:;Volume ( 119 ):;issue: 004
contenttypeFulltext


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