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Static and Dynamic Buckling of Thin-Walled Plate Structures

  • Tomasz Kubiak

Table of contents

  1. Front Matter
    Pages i-vi
  2. Tomasz Kubiak
    Pages 1-25
  3. Tomasz Kubiak
    Pages 27-46
  4. Tomasz Kubiak
    Pages 47-65
  5. Tomasz Kubiak
    Pages 67-96
  6. Tomasz Kubiak
    Pages 97-111
  7. Tomasz Kubiak
    Pages 113-139
  8. Tomasz Kubiak
    Pages 141-158
  9. Tomasz Kubiak
    Pages 159-172
  10. Tomasz Kubiak
    Pages 173-182

About this book

Introduction

This monograph deals with buckling and postbuckling behavior of thin plates and thin-walled structures with flat wall subjected to static and dynamic load. The investigations are carried out in elastic range.
The basic assumption here is the  thin plate theory. This method is used to determination the buckling load and postbuckling analysis of thin-walled structures subjected to static and dynamic load. The book introduces two methods for static and dynamic buckling investigation which allow for a wider understanding of the phenomenon. Two different methods also can allow uncoupling of the phenomena occurring at the same time and attempt to estimate their impact on the final result.
A general mathematical model, adopted in proposed analytical-numerical method, enables the consideration of all types of stability loss i.e.local, global and interactive forms of buckling. The applied numerical-numerical method includes adjacent of walls, shear-lag phenomenon and a deplanation of cross-sections.

Keywords

Budiansky-Hutchinson Criterion Distortional Buckling Flexural–torsional Buckling Kleiber-Kotula-Saran Criterion Lateral Buckling Postbuckling Analysis Thin Plates Thin-Walled Columns Thin-Walled Girders Thin-Walled Structures

Authors and affiliations

  • Tomasz Kubiak
    • 1
  1. 1., Department of Strength of MaterialsLodz Univerity of TechnologyLodzPoland

Bibliographic information

  • DOI https://doi.org/10.1007/978-3-319-00654-3
  • Copyright Information Springer International Publishing Switzerland 2013
  • Publisher Name Springer, Heidelberg
  • eBook Packages Engineering
  • Print ISBN 978-3-319-00653-6
  • Online ISBN 978-3-319-00654-3
  • Buy this book on publisher's site
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