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

. Mechanism-based theoretical models are put forward to conveniently predict the mechanical responses and defect evolution. The findings presented;

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Numerical Modeling of Concrete Cracking

continuum-based and discrete crack models, meso-scale models, advanced discretization strategies to capture evolving cracks based on the concept;

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Uncertainty Modeling In Finite Element, Fatigue And Stability Of Systems

conditions. Consideration of uncertainties and their effect on system behavior is an essential and integral part of defining systems. In eleven;

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Engineering Applications of Discrete Element Method

loose coupling model, and the kinematic effect of the bulk materials, the mechanical effect of the interaction between the bulk materials, and;

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Engineering Applications of Discrete Element Method

loose coupling model, and the kinematic effect of the bulk materials, the mechanical effect of the interaction between the bulk materials, and;

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Electromagnetic Modeling by Finite Element Methods

of the FEM with mechanical equations, circuits, converters, and thermal effects; material modeling; and proven methods for hysteresis;

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Matrix Discrete Element Analysis of Geological and Geotechnical Engineering

discontinuity, inhomogeneity, and large deformation damage of rock and soil. It is widely used in both research and industry. Based on the innovative;

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

in order to simulate directly a set of discrete properties that are responsible of the macroscopic behavior. The discrete element model has been;

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Adaptive Analysis of Damage and Fracture in Rock with Multiphysical Fields Coupl

-discrete element-finite volume algorithm for 3D multiscale propagation of hydraulic fracture networks, taking into account hydro-mechanical;

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Adaptive Analysis of Damage and Fracture in Rock with Multiphysical Fields Coupl

-discrete element-finite volume algorithm for 3D multiscale propagation of hydraulic fracture networks, taking into account hydro-mechanical;

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Advanced Materials

-chemical and mechanical studies of the structural-sensitive and physical-mechanical properties of materials. The obtained results are based on new;

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Advanced Materials

-chemical and mechanical studies of the structural-sensitive and physical-mechanical properties of materials. The obtained results are based on new;

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Mechanical Properties of Polycarbonate

on experimental characterization, material modeling and finite element simulation method for polycarbonate in aeronautical and aerospace;

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Nonlinear Mechanical Analysis of Carbon Nanostructures

process is directly or indirectly dependent on the analysis of mechanical properties and behavior. In this book, a novel simulation method for;

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Modeling & Analysis Of Dynamic Systems

origin. It includes detailed modeling of mechanical, electrical, electro-mechanical, thermal, and fluid systems. Models are developed in the form;

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Principles of Aeroelasticity

engineering. The book begins with a discussion on static behavior, and moves on to static instability and divergence, dynamic behavior leading up;

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Carbon Nanotube-Reinforced Polymers

are used in the mechanical and structural componentsAnalyzes the behavior of carbon nanotube-based composites in different conditions;

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The Combined Finite-Discrete Element Method

The combined finite discrete element method is a relatively new computational tool aimed at problems involving static and / or dynamic;

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Modeling of Inelastic Behavior of RC Structures Under Seismic Loads

This collection of technical papers presents the latest ideas and findings on the inelastic behavior of reinforced concrete structures from;

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Discrete Element Method to Model 3D Continuous Materials

in order to simulate directly a set of discrete properties that are responsible of the macroscopic behavior. The discrete element model has been;

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Mechanical Behavior at Small Scales Experiments and Modeling

, be it microstructural or geometric, plays an important role. Firstly it focuses on understanding the mechanical behavior of nanostructured;

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

behavior. Originally, the discrete element model was developed for granular material. This book, the second in the Discrete Element Model and;

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Coupled CFDDEM Modeling

Discusses the CFD-DEM method of modeling which combines both the Discrete Element Method and Computational Fluid Dynamics to simulate;

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Dislocation Mechanism-Based Crystal Plasticity

plasticity theory based on Taylar law dislocation, mechanism at the mesoscale, phase-field theory of crystal plasticity, computation at the submicron;

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Powder Consolidation Using Cold Spray

interparticle boundaries and subsequent splat boundary cracking on the mechanical behavior of cold spray coatings. The discussion of applications;

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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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