Micromechanics Based Modeling of Metal Matrix Composites Using Finite Element Method

Micromechanics Based Modeling of Metal Matrix Composites Using Finite Element Method PDF Author: C. R. Ananthanarayanan
Publisher:
ISBN:
Category : Metallic composites
Languages : en
Pages : 214

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Micromechanics Based Modeling of Metal Matrix Composites Using Finite Element Method

Micromechanics Based Modeling of Metal Matrix Composites Using Finite Element Method PDF Author: C. R. Ananthanarayanan
Publisher:
ISBN:
Category : Metallic composites
Languages : en
Pages : 214

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Book Description


Micromechanics and Nanosimulation of Metals and Composites

Micromechanics and Nanosimulation of Metals and Composites PDF Author: Siegfried Schmauder
Publisher: Springer Science & Business Media
ISBN: 3540786783
Category : Technology & Engineering
Languages : en
Pages : 432

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Book Description
The strength of metallic materials determines the usability and reliability of all the machines, tools and equipment around us. Yet, the question about which mechanisms control the strength and damage resistance of materials and how they can be optimised remains largely unanswered. How do real, heterogeneous ma- rials deform and fail? Why can a small modification of the microstructure increase the strength and damage resistance of materials manifold? How can the strength of heterogeneous materials be predicted? The purpose of this book is to present different experimental and computational analysis methods of micromechanics of damage and strength of materials and to demonstrate their applications to various micromechanical problems. This book summarizes at a glance some of the publications of the Computational Mechanics Group at the IMWF/MPA Stuttgart, dealing with atomistic, micro- and meso- chanical modelling and experimental analysis of strength and damage of metallic materials. In chapter 1, the micromechanisms of damage and fracture in different groups of materials are investigated experimentally, using direct observations and inverse analysis. The interaction of microstructural elements with the evolving damage is studied in these experiments. Chapter 2 presents different approaches to the - cromechanical simulation of composite materials: embedded unit cells, multiphase finite elements and multiparticle unit cells. Examples of the application of these models to the analysis of deformation and damage in different materials are given. Chapter 3 deals with the methods of numerical modelling of damage evolution and crack growth in heterogeneous materials.

Inelasticity and Micromechanics of Metal Matrix Composites

Inelasticity and Micromechanics of Metal Matrix Composites PDF Author: George Voyiadjis
Publisher: Elsevier
ISBN: 1483290441
Category : Technology & Engineering
Languages : en
Pages : 358

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Book Description
This book contains fifteen papers based on the presentations made at the symposium on "Inelasticity and Micromechanics of Metal Matrix Composites" held at the University of Washington, USA, in mid-1994. The papers represent the most recent work conducted on inelasticity and micromechanics of metal matrix composites. The book is divided into two parts: Part I deals with the study of inelastic deformation in metal matrix composites, while Part II tackles the micromechanical aspects of metal matrix composites. The articles discuss different aspects of these two topics ranging from purely theoretical treatments to extensive experimental investigations. Many of the papers are by prominent researchers working in this area.

On the Finite Element Implementation of the Generalized Method of Cells Micromechanics Constitutive Model

On the Finite Element Implementation of the Generalized Method of Cells Micromechanics Constitutive Model PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 68

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Numerical Analysis and Modelling of Composite Materials

Numerical Analysis and Modelling of Composite Materials PDF Author: J.W. Bull
Publisher: Springer Science & Business Media
ISBN: 9401106037
Category : Technology & Engineering
Languages : en
Pages : 457

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Book Description
Composite materials are increasingly used in many applications because they offer the engineer a range of advantages over traditional materials. They are often used in situations where a specified level of performance is required, but where the cost of testing the materials under the extremes of those specifications is very high. In order to solve this problem, engineers are turning to computer Modelling to evaluate the materials under the range of conditions they are likely to encounter. Many of these analyses are carried out in isolation, and yet the evaluation of a range of composites can be carried out using the same basic principles. In this new book the editor has brought together an international panel of authors, each of whom is working on the analysis and Modelling of composite materials. The overage of the book is deliberately wide; to illustrate that similar principles and methods can be used to model and evaluate a wide range of materials. It is also hoped that, by bringing together this range of topics, the insight gained in the study of one composite can be recognized and utilized in the study of others. Professional engineers involved in the specification and testing of composite material structures will find this book an invaluable resource in the course of their work. It will also be of interest to those industrial and academic engineers involved in the design, development, manufacture and applications of composite materials.

A Micromechanics-based Strength Prediction Methodology for Notched Metal Matrix Composites

A Micromechanics-based Strength Prediction Methodology for Notched Metal Matrix Composites PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 22

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A Macro-micromechanics Analysis of a Notched Metal Matrix Composite

A Macro-micromechanics Analysis of a Notched Metal Matrix Composite PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 36

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Book Description


Finite Element Applications

Finite Element Applications PDF Author: Michael Okereke
Publisher: Springer
ISBN: 3319671251
Category : Technology & Engineering
Languages : en
Pages : 488

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Book Description
This textbook demonstrates the application of the finite element philosophy to the solution of real-world problems and is aimed at graduate level students, but is also suitable for advanced undergraduate students. An essential part of an engineer’s training is the development of the skills necessary to analyse and predict the behaviour of engineering systems under a wide range of potentially complex loading conditions. Only a small proportion of real-life problems can be solved analytically, and consequently, there arises the need to be able to use numerical methods capable of simulating real phenomena accurately. The finite element (FE) method is one such widely used numerical method. Finite Element Applications begins with demystifying the ‘black box’ of finite element solvers and progresses to addressing the different pillars that make up a robust finite element solution framework. These pillars include: domain creation, mesh generation and element formulations, boundary conditions, and material response considerations. Readers of this book will be equipped with the ability to develop models of real-world problems using industry-standard finite element packages.

Critique of Macro Flow/Damage Surface Representations for Metal Matrix Composites Using Micromechanics

Critique of Macro Flow/Damage Surface Representations for Metal Matrix Composites Using Micromechanics PDF Author: Cliff J. Lissenden
Publisher:
ISBN:
Category :
Languages : en
Pages : 36

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Book Description


Finite Element Modeling and Simulation of Thermomechanical Processing of Particle Reinforced Metal Matrix Composites

Finite Element Modeling and Simulation of Thermomechanical Processing of Particle Reinforced Metal Matrix Composites PDF Author: Kendall Gennick
Publisher:
ISBN: 9781423580065
Category : Finite element method
Languages : en
Pages : 141

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Book Description
During the consolidation phase, reinforcement particles of Metal Matrix Composites (MMC's) tend to be non uniformly distributed. The result is that the material properties of the composite materials are not as good as those originally desired. Through large amounts of straining, homogeneity can be achieved. Finite element models of MMC's undergoing different thermomechanical processes (TMP's) to true strains of approximately 1.2 were generated. The models consist of particle clusters within the particle-depleted matrix. The particle clusters were modeled by either a smeared model in which the particles refine the grains in the cluster, or a discrete model of the particles within clusters. The smeared and discrete models qualitatively agreed with each other. The results suggest that the best TMP to reach a state of reinforcement particle homogeneity was a hot worked, low strain rate TMP.