Deformation And Fracture Mechanics Of Engineering Materials

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Deformation and Fracture Mechanics of Engineering Materials

Author : Richard W. Hertzberg
Publisher : Unknown
Page : 824 pages
File Size : 43,7 Mb
Release : 1996
Category : Science
ISBN : UOM:39015047382356

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Deformation and Fracture Mechanics of Engineering Materials by Richard W. Hertzberg Pdf

This edition comprehensively updates the field of fracture mechanics by including details of the latest research programmes. It contains new material on non-metals, design issues and statistical aspects. The application of fracture mechanics to different types of materials is stressed.

Deformation and Fracture Mechanics of Engineering Materials

Author : Richard W. Hertzberg
Publisher : Unknown
Page : 714 pages
File Size : 54,7 Mb
Release : 1989-01-17
Category : Science
ISBN : UOM:39015047356269

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Deformation and Fracture Mechanics of Engineering Materials by Richard W. Hertzberg Pdf

This Third Edition of the well-received engineering materials book has been completely updated, and now contains over 1,100 citations. Thorough enough to serve as a text, and up-to-date enough to serve as a reference. There is a new chapter on strengthening mechanisms in metals, new sections on composites and on superlattice dislocations, expanded treatment of cast and powder-produced conventional alloys, plastics, quantitative fractography, JIC and KIEAC test procedures, fatigue, and failure analysis. Includes examples and case histories.

Deformation and Fracture Mechanics of Engineering Materials

Author : Richard W. Hertzberg,Richard P. Vinci,Jason L. Hertzberg
Publisher : John Wiley & Sons
Page : 800 pages
File Size : 45,9 Mb
Release : 2020-07-08
Category : Technology & Engineering
ISBN : 9781119670575

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Deformation and Fracture Mechanics of Engineering Materials by Richard W. Hertzberg,Richard P. Vinci,Jason L. Hertzberg Pdf

Deformation and Fracture Mechanics of Engineering Materials, Sixth Edition, provides a detailed examination of the mechanical behavior of metals, ceramics, polymers, and their composites. Offering an integrated macroscopic/microscopic approach to the subject, this comprehensive textbook features in-depth explanations, plentiful figures and illustrations, and a full array of student and instructor resources. Divided into two sections, the text first introduces the principles of elastic and plastic deformation, including the plastic deformation response of solids and concepts of stress, strain, and stiffness. The following section demonstrates the application of fracture mechanics and materials science principles in solids, including determining material stiffness, strength, toughness, and time-dependent mechanical response. Now offered as an interactive eBook, this fully-revised edition features a wealth of digital assets. More than three hours of high-quality video footage helps students understand the practical applications of key topics, supported by hundreds of PowerPoint slides highlighting important information while strengthening student comprehension. Numerous real-world examples and case studies of actual service failures illustrate the importance of applying fracture mechanics principles in failure analysis. Ideal for college-level courses in metallurgy and materials, mechanical engineering, and civil engineering, this popular is equally valuable for engineers looking to increase their knowledge of the mechanical properties of solids.

Deformation and Fracture Mechanics of Engineering Materials

Author : Richard W. Hertzberg
Publisher : John Wiley & Sons
Page : 796 pages
File Size : 45,7 Mb
Release : 1983
Category : Science
ISBN : UOM:39015015409678

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Deformation and Fracture Mechanics of Engineering Materials by Richard W. Hertzberg Pdf

Updated to reflect recent developments in our understanding of deformation and fracture processes in structural materials. This completely revised reference includes new sections on isostress analysis, modulus of rupture, creep fracture micromechanicsms, and many more.

Damage and Fracture Mechanics

Author : Taoufik Boukharouba,Mimoun Elboujdaini,Guy Pluvinage
Publisher : Springer Science & Business Media
Page : 616 pages
File Size : 47,8 Mb
Release : 2009-08-09
Category : Science
ISBN : 9789048126699

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Damage and Fracture Mechanics by Taoufik Boukharouba,Mimoun Elboujdaini,Guy Pluvinage Pdf

The First African InterQuadrennial ICF Conference “AIQ-ICF2008” on Damage and Fracture Mechanics – Failure Analysis of Engineering Materials and Structures”, Algiers, Algeria, June 1–5, 2008 is the first in the series of InterQuadrennial Conferences on Fracture to be held in the continent of Africa. During the conference, African researchers have shown that they merit a strong reputation in international circles and continue to make substantial contributions to the field of fracture mechanics. As in most countries, the research effort in Africa is und- taken at the industrial, academic, private sector and governmental levels, and covers the whole spectrum of fracture and fatigue. The AIQ-ICF2008 has brought together researchers and engineers to review and discuss advances in the development of methods and approaches on Damage and Fracture Mechanics. By bringing together the leading international experts in the field, AIQ-ICF promotes technology transfer and provides a forum for industry and researchers of the host nation to present their accomplishments and to develop new ideas at the highest level. International Conferences have an important role to play in the technology transfer process, especially in terms of the relationships to be established between the participants and the informal exchange of ideas that this ICF offers.

Mechanical Behavior and Fracture of Engineering Materials

Author : Jorge Luis González-Velázquez
Publisher : Springer Nature
Page : 244 pages
File Size : 55,5 Mb
Release : 2019-08-29
Category : Technology & Engineering
ISBN : 9783030292416

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Mechanical Behavior and Fracture of Engineering Materials by Jorge Luis González-Velázquez Pdf

This book presents the theoretical concepts of stress and strain, as well as the strengthening and fracture mechanisms of engineering materials in an accessible level for non-expert readers, but without losing scientific rigor. This volume fills the gap between the specialized books on mechanical behavior, physical metallurgy and material science and engineering books on strength of materials, structural design and materials failure. Therefore it is intended for college students and practicing engineers that are learning for the first time the mechanical behavior and failure of engineering materials or wish to deepen their understanding on these topics. The book includes specific topics seldom covered in other books, such as: how to determine a state of stress, the relation between stress definition and mechanical design, or the theory behind the methods included in industrial standards to assess defects or to determine fatigue life. The emphasis is put into the link between scientific knowledge and practical applications, including solved problems of the main topics, such as stress and strain calculation. Mohr's Circle, yield criteria, fracture mechanics, fatigue and creep life prediction. The volume covers both the original findings in the field of mechanical behavior of engineering materials, and the most recent and widely accepted theories and techniques applied to this topic. At the beginning of some selected topics that by the author's judgement are transcendental for this field of study, the prime references are given, as well as a brief biographical semblance of those who were the pioneers or original contributors. Finally, the intention of this book is to be a textbook for undergraduate and graduate courses on Mechanical Behavior, Mechanical Metallurgy and Materials Science, as well as a consulting and/or training material for practicing engineers in industry that deal with mechanical design, materials selection, material processing, structural integrity assessment, and for researchers that incursion for the first time in the topics covered in this book.

Mechanical Behavior of Materials

Author : Norman E. Dowling
Publisher : Prentice Hall
Page : 912 pages
File Size : 41,6 Mb
Release : 2007
Category : Technology & Engineering
ISBN : 0131863126

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Mechanical Behavior of Materials by Norman E. Dowling Pdf

Comprehensive in scope and readable, this book explores the methods used by engineers to analyze and predict the mechanical behavior of materials. Author Norman E. Dowling provides thorough coverage of materials testing and practical methods for forecasting the strength and life of mechanical parts and structural members.

Mechanics and Mechanisms of Fracture

Author : Alan F. Liu
Publisher : ASM International
Page : 452 pages
File Size : 45,7 Mb
Release : 2005-01-01
Category : Technology & Engineering
ISBN : 9781615032525

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Mechanics and Mechanisms of Fracture by Alan F. Liu Pdf

Mechanics of Finite Deformation and Fracture

Author : Majid Aleyaasin
Publisher : CRC Press
Page : 290 pages
File Size : 42,8 Mb
Release : 2016-01-05
Category : Technology & Engineering
ISBN : 9781498717021

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Mechanics of Finite Deformation and Fracture by Majid Aleyaasin Pdf

This important work covers the fundamentals of finite deformation in solids and constitutive relations for different types of stresses in large deformation of solids. In addition, the book covers the fracture phenomena in brittle or quasi-brittle materials in which large deformation does not occur. The book provides a thorough understanding of fracture mechanics as well. Since mathematical proof with full derivation is demonstrated throughout the book, readers will gain the skills to understand and drive the basic concepts on their own, enabling them to put forward new ideas and solutions. Finite deformations in material can occur with change of geometry such that the deformed shape may not resemble the initial shape. Analyzing these types of deformations needs a particular mathematical tool that is always associated with tensor notations. In general the geometry may be non-orthogonal, and the use of covariant and contra-variant tensor concepts to express the finite deformations and the associated mechanical strains are needed. In addition, it is obvious that in large deformations, there are several definitions for stress, each depending on the frame of the stress definitions. The constitutive equations in material also depends on the type of stress that is introduced. In simulation of the material deformation, components of the deformation tensor will be transformed from one frame to another either in orthogonal or in non-orthogonal coordinate of geometry. This informative book covers all this in detail.

Deformation and Fracture Mechanics of Engineering Materials

Author : Deepak Gupta
Publisher : Unknown
Page : 0 pages
File Size : 47,7 Mb
Release : 2016
Category : Deformations (Mechanics)
ISBN : 1681172143

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Deformation and Fracture Mechanics of Engineering Materials by Deepak Gupta Pdf

Mechanics is the body of knowledge that deals with the relationships between forces and the motion of points through space, including the material space. Material science is the body of knowledge that deals with the properties of materials, including their mechanical properties. Mechanics is very deductivehaving defined some variables and given some basic premises, one can logically deduce relationships between the variables. Material science is very empiricalhaving defined some variables one establishes the relationships between the variables experimentally. Mechanics of materials synthesizes the empirical relationships of materials into the logical framework of mechanics, to produce formulas for use in the design of structures and other solid bodies.

Mechanical Behaviour of Engineering Materials

Author : Joachim Roesler,Harald Harders,Martin Baeker
Publisher : Springer Science & Business Media
Page : 540 pages
File Size : 55,6 Mb
Release : 2007-10-16
Category : Science
ISBN : 9783540734482

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Mechanical Behaviour of Engineering Materials by Joachim Roesler,Harald Harders,Martin Baeker Pdf

How do engineering materials deform when bearing mechanical loads? To answer this crucial question, the book bridges the gap between continuum mechanics and materials science. The different kinds of material deformation are explained in detail. The book also discusses the physical processes occurring during the deformation of all classes of engineering materials and shows how these materials can be strengthened to meet the design requirements. It provides the knowledge needed in selecting the appropriate engineering material for a certain design problem. This book is both a valuable textbook and a useful reference for graduate students and practising engineers.

High Temperature Deformation and Fracture of Materials

Author : Jun-Shan Zhang
Publisher : Elsevier
Page : 383 pages
File Size : 42,7 Mb
Release : 2010-09-01
Category : Technology & Engineering
ISBN : 9780857090805

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High Temperature Deformation and Fracture of Materials by Jun-Shan Zhang Pdf

The energy, petrochemical, aerospace and other industries all require materials able to withstand high temperatures. High temperature strength is defined as the resistance of a material to high temperature deformation and fracture. This important book provides a valuable reference to the main theories of high temperature deformation and fracture and the ways they can be used to predict failure and service life. Analyses creep behaviour of materials, the evolution of dislocation substructures during creep, dislocation motion at elevated temperatures and importantly, recovery-creep theories of pure metals Examines high temperature fracture, including nucleation of creep cavity, diffusional growth and constrained growth of creep cavities A valuable reference to the main theories of high temperature deformation and fracture and the ways they can be used to predict failure and service life

Atomistic Modeling of Materials Failure

Author : Markus J. Buehler
Publisher : Springer Science & Business Media
Page : 547 pages
File Size : 41,8 Mb
Release : 2008-08-07
Category : Science
ISBN : 9780387764269

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Atomistic Modeling of Materials Failure by Markus J. Buehler Pdf

This is an introduction to molecular and atomistic modeling techniques applied to fracture and deformation of solids, focusing on a variety of brittle, ductile, geometrically confined and biological materials. The overview includes computational methods and techniques operating at the atomic scale, and describes how these techniques can be used to model cracks and other deformation mechanisms. The book aims to make new molecular modeling techniques available to a wider community.