State-based buckling analysis of beam-like structures

Beam, column, plate, and any other structure, under full or partial compressive loading, are prone to failure by the buckling phenomenon. At the instant of failure, the structure may be in unpredictable elastic, elastic–plastic, full plastic, cracked, or other forms of deterioration state. Therefore...

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Published inArchive of applied mechanics (1991) Vol. 87; no. 9; pp. 1555 - 1565
Main Authors Ranjbaran, Abdolrasoul, Ranjbaran, Mohammad
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer Berlin Heidelberg 01.09.2017
Springer Nature B.V
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ISSN0939-1533
1432-0681
DOI10.1007/s00419-017-1273-6

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Abstract Beam, column, plate, and any other structure, under full or partial compressive loading, are prone to failure by the buckling phenomenon. At the instant of failure, the structure may be in unpredictable elastic, elastic–plastic, full plastic, cracked, or other forms of deterioration state. Therefore, in spite of so much study, there is no definite solution to the problem. In this paper a unified, simple, and exact theory is proposed where buckling is considered as the change of state of structure between intact and collapsed states, and then the buckling capacity is innovatively expressed via states and phenomena functions, which are explicitly defined as functions of state variable. The state variable is determined by calibration of the structure slenderness ratio. The efficacy of the work is verified via concise mathematical logics, and comparison of the results with those of the others via seven examples.
AbstractList Beam, column, plate, and any other structure, under full or partial compressive loading, are prone to failure by the buckling phenomenon. At the instant of failure, the structure may be in unpredictable elastic, elastic–plastic, full plastic, cracked, or other forms of deterioration state. Therefore, in spite of so much study, there is no definite solution to the problem. In this paper a unified, simple, and exact theory is proposed where buckling is considered as the change of state of structure between intact and collapsed states, and then the buckling capacity is innovatively expressed via states and phenomena functions, which are explicitly defined as functions of state variable. The state variable is determined by calibration of the structure slenderness ratio. The efficacy of the work is verified via concise mathematical logics, and comparison of the results with those of the others via seven examples.
Author Ranjbaran, Abdolrasoul
Ranjbaran, Mohammad
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Cites_doi 10.1061/(ASCE)EM.1943-7889.0000783
10.1061/(ASCE)EM.1943-7889.0000734
10.1061/(ASCE)0733-9445(1997)123:6(695)
10.1007/s00419-015-1115-3
10.1016/j.tws.2012.05.009
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10.1002/cnm.1400
10.1016/j.tws.2011.10.012
10.1016/B978-008043015-7/50043-9
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Issue 9
Keywords Beam
State functions
Phenomena functions
Capacity
Column
State-based philosophy
Buckling
Language English
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Snippet Beam, column, plate, and any other structure, under full or partial compressive loading, are prone to failure by the buckling phenomenon. At the instant of...
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SubjectTerms Buckling
Classical Mechanics
Columnar structure
Columns (structural)
Engineering
Functions (mathematics)
Mathematical analysis
Original
Plates (structural members)
State variable
Theoretical and Applied Mechanics
Title State-based buckling analysis of beam-like structures
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