Materials Structure & Micromechanics of Fracture IV

Materials Structure & Micromechanics of Fracture IV
Author: Jaroslav Pokluda
Publisher:
Total Pages: 444
Release: 2005
Genre: Science
ISBN:

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This volume contains papers selected from the more than 120 contributions presented during the 4th international conference on Materials Structure & Micromechanics of Fracture (MSMF-4), in Brno, Czech Republic, June 23-25, 2004. The MSMF-4 conference successfully carried on the tradition of previous conferences. Nearly 150 scientists from 21 countries presented a variety of multiscale approaches to the modeling and testing of deformation and fracture processes in engineering materials. In collaboration with the International Advisory Board, the organizers also asked Prof. A. J. McEvily (University of Connecticut, USA), Prof. W. Dietzel (GKSS-Forschungszentrum Geesthacht GmbH, Germany), Prof. G. E. Beltz (University of Santa Barbara, California, USA) and Prof. T. Kitamura (Kyoto University, Japan) to prepare plenary key-note lectures. In addition, other leading scientists were asked to provide key-note lectures for each section. The resultant papers, ordered approximately in a sequence going from atomistic to mezoscopic to macroscopic, are presented in the first section of these proceedings. The contributed papers are similarly ordered in the second section.The main goal of the book was to demonstrate a variety of multiscale approaches, ranging from atomistic to macroscopic levels, and in this it succeeds admirably.

Fracture Micromechanics of Polymer Materials

Fracture Micromechanics of Polymer Materials
Author: Vitauts P. Tamusz
Publisher: Springer
Total Pages: 340
Release: 1981
Genre: Science
ISBN:

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Within the last two decades fracture theory has been one of the most rapidly advancing fields of continuous media mechanics. Noteworthy suc cess has been achieved in linear fracture mechanics where the propagation of the macrocrack in elastic materials is under study. However, fracture of materials is by no means a simple process since it involves fracture of structural elements ranging from atomic sizes to macrocracks. To obtain all information about how and why materials fail, all stages of the process must be studied. For a long time both mechanical engineers and physicists have been concerned with the problem of the fracture of solids. Unfortunately, most of their work has been independent of the others. To solve the problem not only requires the minds and work of mechanical engineers and physicists but chemists and other specialists must be consulted as well. In this book we will consider some conclusions of the "physical" and "mechanical" schools acquired by the A. F. Joffe Physics-Technical Institute of the USSR Academy of Sciences in Leningrad and the Institute of Polymer Mechanics of Latvian SSR Academy of Sciences in Riga. The methods for studying the phenomena of fracture applied at both Institutes are different yet complimentary to one another; the materials tested are also sometimes different.

Micromechanics of Fracture and Damage

Micromechanics of Fracture and Damage
Author: Luc Dormieux
Publisher: John Wiley & Sons
Total Pages: 332
Release: 2016-06-07
Genre: Technology & Engineering
ISBN: 184821863X

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This book deals with the mechanics and physics of fractures at various scales. Based on advanced continuum mechanics of heterogeneous media, it develops a rigorous mathematical framework for single macrocrack problems as well as for the effective properties of microcracked materials. In both cases, two geometrical models of cracks are examined and discussed: the idealized representation of the crack as two parallel faces (the Griffith crack model), and the representation of a crack as a flat elliptic or ellipsoidal cavity (the Eshelby inhomogeneity problem). The book is composed of two parts: The first part deals with solutions to 2D and 3D problems involving a single crack in linear elasticity. Elementary solutions of cracks problems in the different modes are fully worked. Various mathematical techniques are presented, including Neuber-Papkovitch displacement potentials, complex analysis with conformal mapping and Eshelby-based solutions. The second part is devoted to continuum micromechanics approaches of microcracked materials in relation to methods and results presented in the first part. Various estimates and bounds of the effective elastic properties are presented. They are considered for the formulation and application of continuum micromechanics-based damage models.

Materials Structure & Micromechanics of Fracture V

Materials Structure & Micromechanics of Fracture V
Author: Pavel Šandera
Publisher: Trans Tech Publications Ltd
Total Pages: 448
Release: 2007-12-06
Genre: Technology & Engineering
ISBN: 3038131776

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Volume is indexed by Thomson Reuters CPCI-S (WoS). The main goal of these proceedings was to demonstrate the use of a variety of multi-scale approaches, ranging from the atomistic to the macroscopic level, and in this it succeeds admirably.

Materials Structure & Micromechanics of Fracture VI

Materials Structure & Micromechanics of Fracture VI
Author: Pavel Šandera
Publisher: Trans Tech Publications Ltd
Total Pages: 600
Release: 2011-01-20
Genre: Technology & Engineering
ISBN: 3038134910

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The main goal of these proceedings was to demonstrate the use of a variety of multi-scale approaches, ranging from the atomistic to the macroscopic, and in this it succeeds admirably. The special collection includes more than 130 peer-reviewed papers on atomistic, mesoscopic, macroscopic and multiscale approaches.

Materials Structure & Micromechanics of Fracture VIII

Materials Structure & Micromechanics of Fracture VIII
Author: Pavel Šandera
Publisher: Trans Tech Publications Ltd
Total Pages: 672
Release: 2016-12-08
Genre: Technology & Engineering
ISBN: 3035701075

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Collection of selected papers from the 8th International Conference on Materials Structure and Micromechanics of Fracture (MSMF-8, June 27-29, 2016, Brno, Czech Republic) includes 145 peer-reviewed papers on atomistic, mesoscopic, macroscopic and multiscale approaches in the research of strength properties of the various materials

Fracture Mechanics

Fracture Mechanics
Author: Dietmar Gross
Publisher: Springer Science & Business Media
Total Pages: 324
Release: 2006-05-12
Genre: Technology & Engineering
ISBN: 3540240349

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- self-contained and well illustrated - complete and comprehensive derivation of mechanical/mathematical results with enphasis on issues of practical importance - combines classical subjects of fracture mechanics with modern topics such as microheterogeneous materials, piezoelectric materials, thin films, damage - mechanically and mathematically clear and complete derivations of results

Damage Mechanics and Micromechanics of Localized Fracture Phenomena in Inelastic Solids

Damage Mechanics and Micromechanics of Localized Fracture Phenomena in Inelastic Solids
Author: George Z Voyiadjis
Publisher: Springer Science & Business Media
Total Pages: 426
Release: 2012-01-29
Genre: Technology & Engineering
ISBN: 3709104270

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This book resulted from a series of lecture notes presented in CISM, Udine in July 7 -11, 2008. The papers inform about recent advances in continuum damage mechanics for both metals and metal matrix composites as well as the micromechanics of localization in inelastic solids. Also many of the different constitutive damage models that have recently appeared in the literature and the different approaches to this topic are presented, making them easily accessible to researchers and graduate students in civil engineering, mechanical engineering, engineering mechanics, aerospace engineering, and material science.

Micromechanisms of Fracture and Fatigue

Micromechanisms of Fracture and Fatigue
Author: Jaroslav Pokluda
Publisher: Springer Science & Business Media
Total Pages: 296
Release: 2010-05-27
Genre: Technology & Engineering
ISBN: 1849962669

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Micromechanisms of Fracture and Fatigue forms the culmination of 20 years of research in the field of fatigue and fracture. It discusses a range of topics and comments on the state of the art for each. The first part is devoted to models of deformation and fracture of perfect crystals. Using various atomistic methods, the theoretical strength of solids under simple and complex loading is calculated for a wide range of elements and compounds, and compared with experimental data. The connection between the onset of local plasticity in nanoindentation tests and the ideal shear strength is analysed using a multi-scale approach. Moreover, the nature of intrinsic brittleness or ductility of perfect crystal lattices is demonstrated by the coupling of atomistic and mesoscopic approaches, and compared with brittle/ductile behaviour of engineering materials. The second part addresses extrinsic sources of fracture toughness of engineering materials, related to their microstructure and microstructurally-induced crack tortuosity. Micromechanisms of ductile fracture are also described, in relation to the fracture strain of materials. Results of multilevel modelling, including statistical aspects of microstructure, are used to explain remarkable phenomena discovered in experiments. In the third part of the book, basic micromechanisms of fatigue cracks propagation under uniaxial and multiaxial loading are discussed on the basis of the unified mesoscopic model of crack tip shielding and closure, taking both microstructure and statistical effects into account. Applications to failure analysis are also outlined, and an attempt is made to distinguish intrinsic and extrinsic sources of materials resistance to fracture. Micromechanisms of Fracture and Fatigue provides scientists, researchers and postgraduate students with not only a deep insight into basic micromechanisms of fracture behaviour of materials, but also a number of engineering applications.