Mechanics of Periodically Heterogeneous Structures
Title | Mechanics of Periodically Heterogeneous Structures PDF eBook |
Author | L.I. Manevitch |
Publisher | Springer Science & Business Media |
Pages | 276 |
Release | 2013-11-11 |
Genre | Technology & Engineering |
ISBN | 3540445714 |
Rigorous presentation of Mathematical Homogenization Theory is the subject of numerous publications. This book, however, is intended to fill the gap in the analytical and numerical performance of the corresponding asymptotic analysis of the static and dynamic behaviors of heterogenous systems. Numerous concrete applications to composite media, heterogeneous plates and shells are considered. A lot of details, numerical results for cell problem solutions, calculations of high-order terms of asymptotic expansions, boundary layer analysis etc., are included.
Micromechanics of Heterogeneous Materials
Title | Micromechanics of Heterogeneous Materials PDF eBook |
Author | Valeriy Buryachenko |
Publisher | Springer Science & Business Media |
Pages | 704 |
Release | 2007-09-20 |
Genre | Science |
ISBN | 0387684859 |
Here is an accurate and timely account of micromechanics, which spans materials science, mechanical engineering, applied mathematics, technical physics, geophysics, and biology. The book features rigorous and unified theoretical methods of applied mathematics and statistical physics in the material science of microheterogeneous media. Uniquely, it offers a useful demonstration of the systematic and fundamental research of the microstructure of the wide class of heterogeneous materials of natural and synthetic nature.
Topology Optimization Design of Heterogeneous Materials and Structures
Title | Topology Optimization Design of Heterogeneous Materials and Structures PDF eBook |
Author | Daicong Da |
Publisher | John Wiley & Sons |
Pages | 200 |
Release | 2020-02-26 |
Genre | Mathematics |
ISBN | 1786305585 |
This book pursues optimal design from the perspective of mechanical properties and resistance to failure caused by cracks and fatigue. The book abandons the scale separation hypothesis and takes up phase-field modeling, which is at the cutting edge of research and is of high industrial and practical relevance. Part 1 starts by testing the limits of the homogenization-based approach when the size of the representative volume element is non-negligible compared to the structure. The book then introduces a non-local homogenization scheme to take into account the strain gradient effects. Using a phase field method, Part 2 offers three significant contributions concerning optimal placement of the inclusion phases. Respectively, these contributions take into account fractures in quasi-brittle materials, interface cracks and periodic composites. The topology optimization proposed has significantly increased the fracture resistance of the composites studied.
Random Heterogeneous Materials
Title | Random Heterogeneous Materials PDF eBook |
Author | Salvatore Torquato |
Publisher | Springer Science & Business Media |
Pages | 720 |
Release | 2013-04-17 |
Genre | Mathematics |
ISBN | 1475763557 |
This accessible text presents a unified approach of treating the microstructure and effective properties of heterogeneous media. Part I deals with the quantitative characterization of the microstructure of heterogeneous via theoretical methods; Part II treats a wide variety of effective properties of heterogeneous materials and how they are linked to the microstructure, accomplished by using rigorous methods.
Nonlinear Mechanics for Composite Heterogeneous Structures
Title | Nonlinear Mechanics for Composite Heterogeneous Structures PDF eBook |
Author | Georgios A. Drosopoulos |
Publisher | CRC Press |
Pages | 327 |
Release | 2022-04-26 |
Genre | Technology & Engineering |
ISBN | 1000579174 |
Nonlinear Mechanics for Composite Heterogeneous Structures applies both classical and multi-scale finite element analysis to the non-linear, failure response of composite structures. These traditional and modern computational approaches are holistically presented, providing insight into a range of non-linear structural analysis problems. The classical methods include geometric and material non-linearity, plasticity, damage and contact mechanics. The cutting-edge formulations include cohesive zone models, the Extended Finite Element Method (XFEM), multi-scale computational homogenization, localization of damage, neural networks and data-driven techniques. This presentation is simple but efficient, enabling the reader to understand, select and apply appropriate methods through programming code or commercial finite element software. The book is suitable for undergraduate studies as a final year textbook and for MSc and PhD studies in structural, mechanical, aerospace engineering and material science, among others. Professionals in these fields will also be strongly benefited. An accompanying website provides MATLAB codes for two-dimensional finite element problems with contact, multi-scale (FE2) and non-linear XFEM analysis, data-driven and machine learning simulations.
Modeling of Creep for Structural Analysis
Title | Modeling of Creep for Structural Analysis PDF eBook |
Author | Konstantin Naumenko |
Publisher | Springer Science & Business Media |
Pages | 220 |
Release | 2007-04-06 |
Genre | Technology & Engineering |
ISBN | 3540708391 |
This book develops methods to simulate and analyze the time-dependent changes of stress and strain states in engineering structures up to the critical stage of creep rupture. The objective of this book is to review some of the classical and recently proposed approaches to the modeling of creep for structural analysis applications. It also aims to extend the collection of available solutions of creep problems by new, more sophisticated examples.
Local and Nonlocal Micromechanics of Heterogeneous Materials
Title | Local and Nonlocal Micromechanics of Heterogeneous Materials PDF eBook |
Author | Valeriy A. Buryachenko |
Publisher | Springer Nature |
Pages | 1012 |
Release | 2021-11-16 |
Genre | Technology & Engineering |
ISBN | 3030817849 |
This book presents the micromechanics of random structure heterogeneous materials, a multidisciplinary research area that has experienced a revolutionary renascence at the overlap of various branches of materials science, mechanical engineering, applied mathematics, technical physics, geophysics, and biology. It demonstrates intriguing successes of unified rigorous theoretical methods of applied mathematics and statistical physics in material science of microheterogeneous media. The prediction of the behaviour of heterogeneous materials by the use of properties of constituents and their microstructure is a central problem of micromechanics. This book is the first in micromechanics where a successful effort of systematic and fundamental research of the microstructure of the wide class of heterogeneous materials of natural and synthetic nature is attempted. The uniqueness of the book lies in its development and expressive representation of statistical methods quantitatively describing random structures which are at most adopted for the forthcoming evaluation of a wide variety of macroscopic transport, electromagnetic, strength, and elastoplastic properties of heterogeneous materials.