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9781402056239

IUTAM Symposium on Mechanical Behavior and Micro-Mechanics of Nanostructured Materials

by ; ;
  • ISBN13:

    9781402056239

  • ISBN10:

    1402056230

  • Format: Hardcover
  • Copyright: 2007-03-06
  • Publisher: Springer Nature
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Summary

This volume contains the proceedings of the IUTAM Symposium on Mechanical Behavior and Micro-mechanics of Nanostructured Materials, held in Beijing, China, June 27-30, 2005. The aim of this symposium was to bring scientists from materials sciences, mechanics, physics, etc. from all over the world together to present and discuss various aspects closely related to the topic of the conference.The proceedings consist of approximately 30 presentations from distinguished scholars. Nano-scale, micro-scale, theoretical, experimental and numerical aspects of the subjects are covered. A wide scope of research and progress are displayed.This work will be of interest to those working in solid mechanics, materials science, solid state physics, and biomaterials.

Table of Contents

Prefacep. ix
IUTAM Symposium 2005 Beijingp. xiii
Mechanical Behaviors of Nanocrystal Materials
Mesoscopic Modeling of the Deformation and Fracture of Nanocrystalline Metalsp. 3
Dislocation-Assisted Grain Growth in Nanocrystalline Copper under Large Deformationp. 11
Microstructure and Tensile Strength of Cu with Nano-Scale Twinsp. 19
Microstructural Evolution in Crystalline Metal Induced by Plastic Deformationp. 25
Super-Strength and Ductility of Nano-Thin Films
The Origin of Superhardness in Nanocomposite Coatings: Analysis of Nanoindentation and Scratch Testsp. 39
Micromechanics of Nanocomposites with Interface Energy Effectp. 51
Measurements and Simulations of Interface Behavior in Metal Thin Film Peeling Along Ceramic Substratep. 61
Micro-Cantilevers for Thin Films: Young's Modulusp. 71
Nanomechanics of Biomaterials
Bio-Inspired Mechanics of Bone-Like Hierarchical Materialsp. 87
Force Unfolding Single RNAs: From Equilibrium to Far-From Equilibriump. 95
Modelling the Thermal Conductivity of Nanofluidsp. 105
Mechanical Behaviors of Carbon Nano-Tube, Nano-Wire, Nano-Layers
A Comparison of Different Interatomic Potentials: Radius Effect of Single Wall Carbon Nanotubesp. 121
Shape Memory Effect and Pseudoelasticity in Cu Nanowiresp. 135
Instabilities of Carbon Nanotubes Studied Using a Hybrid Atom/Continuum Approachp. 145
Shallow and Deep Nanoindentation on W/NbN Nanolayersp. 153
Micro-Mechanics Models and Simulations for the Nanostructured Materials
Cluster Statistical Thermodynamics (CST) - To Efficiently Calculate Quasi-Static Deformation at Finite Temperature Based on Molecular Potentialp. 163
On the Size of the Representative Volume Element for Isotropic Elastic Polycrystalline Copperp. 171
Atomistic Corroboration of a Multiscale Approach for the Analysis of Dislocation Nucleation at a Surface Stepp. 181
Indenter Tip Radius and Micro-Indentation Hardnessp. 191
Mechanical Behaviors of Other Nano-Materials
The Phase Angle of an Interface Crack Induced by Indentation Delamination with Bucklingp. 203
Microscopic Shape Memory and Superelastic Effects and Their Novel Tribological Applicationsp. 211
Dynamics of Self-Organized Epitaxial Island Formation under Controlled Annealingp. 219
Studying Visco-Plasticity of Amorphous Polymers by Indentation Testsp. 229
Phase Transitions of Carbon Materials under High Pressurep. 239
Author Indexp. 251
Subject Indexp. 253
Table of Contents provided by Ingram. All Rights Reserved.

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