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Shell and membrane theories in mecha...
~
Mikhasev, Gennadi I.
Shell and membrane theories in mechanics and biology = from macro- to nanoscale structures /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Shell and membrane theories in mechanics and biology/ edited by Holm Altenbach, Gennadi I. Mikhasev.
Reminder of title:
from macro- to nanoscale structures /
other author:
Altenbach, Holm.
corporate name:
Workshop on the Preservation of Stability under Discretization
Published:
Cham :Springer International Publishing : : 2015.,
Description:
xi, 321 p. :ill. (some col.), digital ; : 24 cm.;
Contained By:
Springer eBooks
Subject:
Nanostructures - Congresses. -
Online resource:
http://dx.doi.org/10.1007/978-3-319-02535-3
ISBN:
9783319025353 (electronic bk.)
Shell and membrane theories in mechanics and biology = from macro- to nanoscale structures /
Shell and membrane theories in mechanics and biology
from macro- to nanoscale structures /[electronic resource] :edited by Holm Altenbach, Gennadi I. Mikhasev. - Cham :Springer International Publishing :2015. - xi, 321 p. :ill. (some col.), digital ;24 cm. - Advanced structured materials,v.451869-8433 ;. - Advanced structured materials ;13..
1 On Some Classes of 3D Boundary-Value Problems of Statics and Dynamics of Plates and Shells,- 2 On the Theories of Plates and Shells at the Nanoscale -- 3 Chaotic Vibrations of Conical and Spherical Shells and Their Control -- 4 Nonclassical Shell Theories in Ocular Biomechanics -- 5 Linear Oscillations of Suspended Graphene -- 6 On Discrete-Kirchhoff Plate Finite Elements: Implementation and Discretization Error -- 7 Shell Theory-Based Estimation of Local Elastic Characteristics of Biological Cells -- 8 On the Direct Approach in the Theory of Second Gradient Plates -- 9 A Shell Theory for Carbon Nanotube of Arbitrary Chirality -- 10 Finite Axisymmetric Deformation of an Inflatable Anisotropic Toroidal Membrane -- 11 Simulation of Cardiac Cell-Seeded Membranes Using the Edge-Based Smoothed FEM -- 12 Determining the Modulus of Elasticity for Polymer Materials by Numerical Testing Thin-walled Double-layer Circular Shells -- 13 Three-Dimensional Exact Analysis of Functionally Graded Laminated Composite Plates -- 14 Prediction of Eigenfrequencies of the Middle Ear Oscillating System after Tympanoplasty and Stapedotomy -- 15 A New Approach for Studying Nonlinear Dynamic Response of a Thin Fractionally Damped Plate with 2:1 and 2:1:1 Internal Resonances -- 16 On Stability of Inhomogeneous Elastic Cylinder of Micropolar Material -- 17 A New Approach for Studying Nonlinear Dynamic Response of a Thin Fractionally Damped Cylindrical Shell with Internal Resonances of the Order of e.
This book presents the latest results related to shells characterize and design shells, plates, membranes and other thin-walled structures, a multidisciplinary approach from macro- to nanoscale is required which involves the classical disciplines of mechanical/civil/materials engineering (design, analysis, and properties) and physics/biology/medicine among others. The book contains contributions of a meeting of specialists (mechanical engineers, mathematicians, physicists and others) in such areas as classical and non-classical shell theories. New trends with respect to applications in mechanical, civil and aero-space engineering, as well as in new branches like medicine and biology are presented which demand improvements of the theoretical foundations of these theories and a deeper understanding of the material behavior used in such structures.
ISBN: 9783319025353 (electronic bk.)
Standard No.: 10.1007/978-3-319-02535-3doiSubjects--Topical Terms:
672781
Nanostructures
--Congresses.
LC Class. No.: QC176.8.N35
Dewey Class. No.: 620.1
Shell and membrane theories in mechanics and biology = from macro- to nanoscale structures /
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edited by Holm Altenbach, Gennadi I. Mikhasev.
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1 On Some Classes of 3D Boundary-Value Problems of Statics and Dynamics of Plates and Shells,- 2 On the Theories of Plates and Shells at the Nanoscale -- 3 Chaotic Vibrations of Conical and Spherical Shells and Their Control -- 4 Nonclassical Shell Theories in Ocular Biomechanics -- 5 Linear Oscillations of Suspended Graphene -- 6 On Discrete-Kirchhoff Plate Finite Elements: Implementation and Discretization Error -- 7 Shell Theory-Based Estimation of Local Elastic Characteristics of Biological Cells -- 8 On the Direct Approach in the Theory of Second Gradient Plates -- 9 A Shell Theory for Carbon Nanotube of Arbitrary Chirality -- 10 Finite Axisymmetric Deformation of an Inflatable Anisotropic Toroidal Membrane -- 11 Simulation of Cardiac Cell-Seeded Membranes Using the Edge-Based Smoothed FEM -- 12 Determining the Modulus of Elasticity for Polymer Materials by Numerical Testing Thin-walled Double-layer Circular Shells -- 13 Three-Dimensional Exact Analysis of Functionally Graded Laminated Composite Plates -- 14 Prediction of Eigenfrequencies of the Middle Ear Oscillating System after Tympanoplasty and Stapedotomy -- 15 A New Approach for Studying Nonlinear Dynamic Response of a Thin Fractionally Damped Plate with 2:1 and 2:1:1 Internal Resonances -- 16 On Stability of Inhomogeneous Elastic Cylinder of Micropolar Material -- 17 A New Approach for Studying Nonlinear Dynamic Response of a Thin Fractionally Damped Cylindrical Shell with Internal Resonances of the Order of e.
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This book presents the latest results related to shells characterize and design shells, plates, membranes and other thin-walled structures, a multidisciplinary approach from macro- to nanoscale is required which involves the classical disciplines of mechanical/civil/materials engineering (design, analysis, and properties) and physics/biology/medicine among others. The book contains contributions of a meeting of specialists (mechanical engineers, mathematicians, physicists and others) in such areas as classical and non-classical shell theories. New trends with respect to applications in mechanical, civil and aero-space engineering, as well as in new branches like medicine and biology are presented which demand improvements of the theoretical foundations of these theories and a deeper understanding of the material behavior used in such structures.
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Engineering (Springer-11647)
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