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NACA-TN-1817

Plastic buckling of simply supported compressed plates

Organization:
NASA - National Aeronautics and Space Administration (NASA)
Year: 1949

Abstract: INTRODUCTION
A theory was recently presented in reference 1 for the plastic buckling under compression of plates with different conditions of support and restraint along the unloaded edges. Good experimental verification of the theory was available at that time for the special cases of plates with the two unloaded edges free (columns) end of plates with one unloaded edge free and the other stiplg supported (flanges). No suitable experimental data were then available, however, for plates with both unloaded edges supported.
Various methods have been used to make buckling tests of simply supported plates Fn compression. One method utilizes plate-edge support fixtures. (See, for example, reference 2.) Such fixtures have not always proved satisfactory because of restraints and supporting conditions developed along the unloaded edges. A method which overcomes this difficulty and has proved quite satisfactory for the determination of buckling makes use of seamless square tubes, for Which each of the four plates may be considered simply supported. (See p. 333, reference 3.)
In order to obtain experimental data in the plastic range for the case of the compressed simply supported plate to provide additional evidence as to the validity of the theory of reference 1, tests were made of- drawn square tubes of 14S-T6 aluminum alloy. The present paper gives the results of these tests and shows the correlation found with various available theories for plastic buckling.
URI: http://yse.yabesh.ir/std;jsery=autho162s7D8308/handle/yse/183215
Subject: ALCOA
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    NACA-TN-1817

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contributor authorNASA - National Aeronautics and Space Administration (NASA)
date accessioned2017-09-04T18:00:10Z
date available2017-09-04T18:00:10Z
date copyright01/01/1949
date issued1949
identifier otherFVYTYDAAAAAAAAAA.pdf
identifier urihttp://yse.yabesh.ir/std;jsery=autho162s7D8308/handle/yse/183215
description abstractINTRODUCTION
A theory was recently presented in reference 1 for the plastic buckling under compression of plates with different conditions of support and restraint along the unloaded edges. Good experimental verification of the theory was available at that time for the special cases of plates with the two unloaded edges free (columns) end of plates with one unloaded edge free and the other stiplg supported (flanges). No suitable experimental data were then available, however, for plates with both unloaded edges supported.
Various methods have been used to make buckling tests of simply supported plates Fn compression. One method utilizes plate-edge support fixtures. (See, for example, reference 2.) Such fixtures have not always proved satisfactory because of restraints and supporting conditions developed along the unloaded edges. A method which overcomes this difficulty and has proved quite satisfactory for the determination of buckling makes use of seamless square tubes, for Which each of the four plates may be considered simply supported. (See p. 333, reference 3.)
In order to obtain experimental data in the plastic range for the case of the compressed simply supported plate to provide additional evidence as to the validity of the theory of reference 1, tests were made of- drawn square tubes of 14S-T6 aluminum alloy. The present paper gives the results of these tests and shows the correlation found with various available theories for plastic buckling.
languageEnglish
titleNACA-TN-1817num
titlePlastic buckling of simply supported compressed platesen
typestandard
page23
statusActive
treeNASA - National Aeronautics and Space Administration (NASA):;1949
contenttypefulltext
subject keywordsALCOA
subject keywordsALLOY
subject keywordsALUMINUM
subject keywordsBUCKLING
subject keywordsCOMPRESSIVE
subject keywordsDIAGRAMS
subject keywordsPLASTICITY
subject keywordsPLATES
subject keywordsSTRAIN
subject keywordsSTRENGTH
subject keywordsSTRESS
subject keywordsTUBING
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DSpace software copyright © 2017-2020  DuraSpace
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