Modern Theory Of Anisotropic Elasticity And Applications


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Modern Theory of Anisotropic Elasticity and Applications


Modern Theory of Anisotropic Elasticity and Applications

Author: Julian J. Wu

language: en

Publisher: SIAM

Release Date: 1991-01-01


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A selection of 26 original papers, some of them substantially revised after the workshop, discuss anisotropic elasticity and its applications in solid mechanics and applied mathematics. Considering elastostatics, elastodynamics, and constitutive relations, they discuss such topics as Green's functio

Anisotropic Elasticity


Anisotropic Elasticity

Author: Thomas C. T. Ting

language: en

Publisher: Oxford University Press

Release Date: 1996-02-15


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Anisotropic Elasticity offers for the first time a comprehensive survey of the analysis of anisotropic materials that can have up to twenty-one elastic constants. Focusing on the mathematically elegant and technically powerful Stroh formalism as a means to understanding the subject, the author tackles a broad range of key topics, including antiplane deformations, Green's functions, stress singularities in composite materials, elliptic inclusions, cracks, thermo-elasticity, and piezoelectric materials, among many others. Well written, theoretically rigorous, and practically oriented, the book will be welcomed by students and researchers alike.

Anisotropic Elastic Plates


Anisotropic Elastic Plates

Author: Chyanbin Hwu

language: en

Publisher: Springer Science & Business Media

Release Date: 2010-08-09


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As structural elements, anisotropic elastic plates find wide applications in modern technology. The plates here are considered to be subjected to not only inplane load but also transverse load. In other words, both plane and plate bending problems as well as the stretching-bending coupling problems are all explained in this book. In addition to the introduction of the theory of anisotropic elasticity, several important subjects have are discussed in this book such as interfaces, cracks, holes, inclusions, contact problems, piezoelectric materials, thermoelastic problems and boundary element analysis.