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Nonlinear mechanics of shells and plates in composite, soft and biological materials

Author: M Amabili
Publisher: Cambridge, United Kingdom : Cambridge University Press, 2018. ©2018
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This book presents the most recent advances on the mechanics of soft and composite shells, including nonlinear vibrations and stability.
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: M Amabili
ISBN: 9781108693349 1108693342 9781316422892 1316422895
OCLC Number: 1054910201
Description: 1 online resource (xvi, 567 pages) : illustrations
Contents: Classical nonlinear theories of elasticity of plates and shells --
Classical nonlinear theories of doubly curved shells --
Composite, sandwich and functionally graded materials: advanced nonlinear shell theories --
Nonlinear shell theory with thickness deformation --
Hyperelasticity of soft biological and rubber materials --
Introduction to nonlinear dynamics --
Viscoelasticity and damping --
Vibrations of rectangular plates: isotropic, laminated and sandwich materials --
Nonlinear stability and vibration of FGM rectangular plates under static and dynamic loads --
Nonlinear static and dynamic response of rectangular plates in rubber and bio-material --
Vibrations of isotropic and laminated composite circular cylindrical shells --
Vibrations of isotropic and laminated composite circular cylindrical shells --
Effect of boundary conditions on large-amplitude vibrations of circular cylindrical shells --
Nonlinear static and dynamic response of a blood-filled and pressurized human aorta --
Nonlinear vibrations and stability of doubly-curved shallow-shells: isotropic and laminated materials --
Nonlinear stability of circular cylindrical shells under static and dynamic axial loads.
Responsibility: Marco Amabili.

Abstract:

This book guides the reader into the modelling of shell structures in applications where advanced composite materials or complex biological materials must be described with great accuracy. A valuable  Read more...

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