Buckling Experiments: Experimental Methods in Buckling of Thin-Walled Structures, Volume 2: Shells, Built-up Structures, Composites and Additional Topics* Edited by Josef Singer, the world's foremost authority on structural buckling. * Time-saving and cost-effective design data for all structural, mechanical, and aerospace engineering researchers. |
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Contents
Preface to Volume 1 xiii | 615 |
Basic Concepts Columns | 621 |
Initial Imperfections | 809 |
Boundary Conditions and Loading Conditions | 863 |
Stiffened Plates | 905 |
Stiffened Shells | 955 |
Composite Structures | 1053 |
Nondestructive Buckling Tests | 1243 |
Plastic Buckling Experiments | 1299 |
Influence of Holes Cutouts and Damaged Structures | 1413 |
Buckling under Dynamic Loads and Special Problems | 1471 |
Thermal Buckling and Creep Buckling | 1547 |
Some Comments on Measurements | 1669 |
Author Index | 1701 |
1707 | |
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Common terms and phrases
aluminum analysis applied axial compression behavior bending boundary conditions buckling load carried Chapter circular circumferential clamped close collapse column combined composite conical corresponding critical curves cutouts cylindrical shells deflection deformation determined developed diameter discussed displacement dynamic edges effect elastic employed Engineering example experimental experiments extensive external pressure fabricated failure frame geometric imperfections included increase indicated influence initial instability internal Journal laminated lateral length lower machine material measured Mechanics method mode models Note observed obtained occurred panels pattern percent plastic plate plot position postbuckling predictions presented ratio recorded relatively Report ring rotation shape shear showed shown in Figure side similar simple Southwell specimens spherical steel stiffened stiffness strain strength stress Structures studies subjected supported surface technique theoretical theory thickness thin torsion tubes typical University values vibration waves welded yield