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The Investigation of Plastic Behavior by Discrete Dislocation Dynamics for Single Crystal Pillar at Submicron Scale

investigative tool is the improved discrete dislocation-based multi-scale approaches, bridging the continuum modeling and atomistic simulation;

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Dislocation Mechanism-Based Crystal Plasticity

Dislocation Based Crystal Plasticity: Theory and Computation at Micron and Submicron Scale provides a comprehensive introduction to the;

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Probing Crystal Plasticity at the Nanoscales

This Brief highlights the search for strain gradients and geometrically necessary dislocations as a possible source of strength for two;

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Mechanics of Dislocation Fields

This book presents a description of the collective behavior of dislocation ensembles based on a continuous description, using the powerful;

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Plasticity of Crystalline Materials

presented at the 3rd and 4th US-France Symposia organized by the editors under the auspices of the International Center for Applied Computational;

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Multiscale Modelling of Plasticity and Fracture by Means of Dislocation Mechanics

is presented. Discrete dislocation mechanics and the neighbouring fields molecular dynamics and crystal plasticity are central parts. The physical;

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Dislocations, Mesoscale Simulations and Plastic Flow

simulations appeared and reached maturity. Their objectives are to unravel the relation between individual and collective dislocation processes at the;

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Discrete Element Method to Model 3D Continuous Materials

Complex behavior models (plasticity, cracks, visco elascticity) face some theoretical difficulties for the determination of the behavior;

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Stochastic Dynamics of Crystal Defects

forms are derived for the stochastic forces acting on crystal defects, allowing new quantitative insight into the role of thermal fluctuations;

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Dislocations and Deformation Mechanisms in Thin Films and Small Structures

mechanical properties of those same materials in bulk. Many explanations of the mechanical behaviors of such small volumes have depended on;

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3D Discrete Element Workbench for Highly Dynamic Thermo-mechanical Analysis

Complex behavior models (plasticity, cracks, visco elascticity) face some theoretical difficulties for the determination of the behavior;

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Dislocations in Solids

crystal growth and on the electronic properties of semiconductors. Influence of dislocations on piezoelectric behavior New;

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Plasticity of Crystals in a Microscopic Viewpoint on the Basis of Dislocation Motion

crystals at low temperatures. Topics discussed include process for thermal activated overcoming of the short-range obstacle by a dislocation;

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Liquid and Single Crystals

properties and thermal behaviors. Next, the authors discuss the recent development of various synthetic approaches and possibilities for chemical;

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Discrete-continuum Coupling Method to Simulate Highly Dynamic Multi-scale Problems

at the continuous (macroscopic) scale. When homogenization fails to give the right behavior law, a solution is to simulate the material at a;

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Theory of Dislocations

ionic crystals. Rather than citing final results, step-by-step developments are provided to offer an in-depth understanding of the topic. The;

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Thermally Activated Mechanisms in Crystal Plasticity

investigating the strength of metallic materials of various structures at extreme temperatures. Crystal plasticity is usually controlled by a limited;

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Dislocations in Solids

dislocation generation under shock loading are presented by Meyers et al. These models provide a basis for understanding the constitutive behavior;

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Multiscale Materials Modeling

of macroscopic properties at the device and component level by simulating structures and materials sequentially on atomic, micro- and mesostructural;

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KDP - Family Single Crystals

is ever increasing. KDP-Family Single Crystals is a comprehensive investigation of the crystallization mechanism for these systems. The first part;

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KDP - Family Single Crystals

is ever increasing. KDP-Family Single Crystals is a comprehensive investigation of the crystallization mechanism for these systems. The first;

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NMR of Liquid Crystal Dendrimers

liquid crystal dendrimers and a detailed description of the NMR theory and experimental techniques used in the investigation of these materials;

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Monotone Structure in Discrete-Event Systems

include computer systems, communication networks, airports and highways. The evolution of DES is governed by events, typically occurring at random;

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Dislocations in Solids

New models for dislocation structure and motion are presented for nanocrystals, nucleation at grain boundaries, shocked crystals;

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Physical Aspects of Fracture

fracture. It is no longer unrealistic to imagine that a crack initiated through a molecular dynamics description could be propagated at the grain;

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Combinatorial Aspect Of Integrable Systems

at RIMS during July 26-30, 2004, as a part of the Project Research 2004 Method of Algebraic Analysis in Integrable Systems . The topics range;

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Plastic Deformation of Nanocrystalline Materials

Plastic Deformation of Nanostructured Materials offers comprehensive analysis on the most important data and results in the field;

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