Non-axisymmetric Local Stability Loss of a Hollow Cylinder
- Indbinding:
- Hardback
- Sideantal:
- 136
- Udgivet:
- 2. November 2023
- Udgave:
- 23001
- Størrelse:
- 173x14x246 mm.
- Vægt:
- 417 g.
- 2-3 uger.
- 9. Oktober 2024
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- 1 valgfrit digitalt ugeblad
- 20 timers lytning og læsning
- Adgang til 70.000+ titler
- Ingen binding
Abonnementet koster 75 kr./md.
Ingen binding og kan opsiges når som helst.
Beskrivelse af Non-axisymmetric Local Stability Loss of a Hollow Cylinder
The book presents formulations and examples of three-dimensional non-axisymmetric stability in viscoelastic anisotropic cylindrical shells. The most critical stability loss modes are determined by minimizing the critical loads and critical times with respect to the number of half-waves in radial as well as transverse directions.
Currently, there is no literature available on three-dimensional local buckling analysis (or localized warpage) that considers non-axisymmetric stability loss in viscoelastic cylindrical shells. The contents of this book provide the formulation for such a stability loss analysis through the framework of the three-dimensional linearized theory of stability. Additionally, as this book addresses the problem by modeling the material as a viscoelastic fibrous composite, it can be applied to carry out buckling analysis in both elastic and viscoelastic cases.
Guide to modelling composite viscoelastic shell elements for buckling analysis
Provides a framework for defining the failure criterion for viscoelastic materials
Course material for teaching shell buckling and viscoelastic composites
Currently, there is no literature available on three-dimensional local buckling analysis (or localized warpage) that considers non-axisymmetric stability loss in viscoelastic cylindrical shells. The contents of this book provide the formulation for such a stability loss analysis through the framework of the three-dimensional linearized theory of stability. Additionally, as this book addresses the problem by modeling the material as a viscoelastic fibrous composite, it can be applied to carry out buckling analysis in both elastic and viscoelastic cases.
Guide to modelling composite viscoelastic shell elements for buckling analysis
Provides a framework for defining the failure criterion for viscoelastic materials
Course material for teaching shell buckling and viscoelastic composites
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