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Multiscale modeling of heterogeneous structures

Author: Jurica Sorić; Peter Wriggers; Olivier Allix
Publisher: Cham, Switzerland : Springer, 2018.
Series: Lecture notes in applied and computational mechanics, v. 86.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This book provides an overview of multiscale approaches and homogenization procedures as well as damage evaluation and crack initiation, and addresses recent advances in the analysis and discretization of heterogeneous materials. It also highlights the state of the art in this research area with respect to different computational methods, software development and applications to engineering structures. The first  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Printed edition:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Jurica Sorić; Peter Wriggers; Olivier Allix
ISBN: 9783319654638 3319654632 3319654624 9783319654621
OCLC Number: 1014337902
Description: 1 online resource (ix, 381 pages) : illustrations (some color).
Contents: Evolution of Failure Mechanisms in Composite Shells Using Different?dels --
Micro-macro Modelling of Metallic Composites --
Comparison of Mechanical Tests for the Identification of Composite Defects using Full-field Measurements and the Modified Constitutive Relation Error --
Snap-through of Bistable Configurations Generated from Variable Stiffness --
Invariant-Based Finite Strain Anisotropic Material Model for Fiber-Reinforced Composites --
Unified Approach to Sensitivity Analysis Based Automation of Multi-scale Modelling --
Efficient Multiscale FE-FFT-based Modeling and Simulation of Macroscopic Deformation Processes with Non-Linear Heterogeneous Microstructures --
Experimental-Numerical Validation Framework for Micromechanical Simulations --
Stochastic Upscaling via Linear Bayesian Updating --
A Model Reduction Technique in Space and Time for Fatigue Simulation --
Finite and Virtual Element Formulation for Large Strain Anisotropic Material with Inextensive Fibers --
A Micromorphic Damage-Plasticity Model to Counteract Mesh Dependence in Finite Element Simulations Involving Material Softening --
Modeling of Material Deformation Responses Using Gradient Elasticity Theory --
3D Crack Propagation by the Extended Finite Element Method and a Gradient-Enhanced Damage Model --
A 3D magnetostrictive Preisach Model for the Simulation of Magneto-electric Composites on Multiple Scales --
A Multiscale Framework for Thermoplasticity --
A Method of Numerical Viscosity Measurement for Solid-Liquid Mixture --
Numerical Simulation of Hydrogen Embrittlement at the Example of a Cracked Pipeline.
Series Title: Lecture notes in applied and computational mechanics, v. 86.
Responsibility: Jurica Sorić, Peter Wriggers, Olivier Allix, editors.

Abstract:

The third part discusses gradient enhanced modeling, in particular quasi-brittle and ductile damage, using the gradient enhanced approach.  Read more...

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