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Advances in Multiaxial Fatigue

Author : David L. McDowell
Publisher : ASTM International
Page : 455 pages
File Size : 36,37 MB
Release : 1993
Category : Alloys
ISBN : 0803118627

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Papers presented at the ASTM Symposium on Multiaxial Fatigue, held in San Diego, November 1991, to communicate the most recent international advances in multiaxial cyclic deformation and fatigue research as well as applications to component analysis and design. The 24 papers are grouped into five ca

Multiaxial Fatigue

Author : Darrell Socie
Publisher : SAE International
Page : 510 pages
File Size : 48,29 MB
Release : 1999-12-15
Category : Technology & Engineering
ISBN : 0768065100

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This book provides practicing engineers, researchers, and students with a working knowledge of the fatigue design process and models under multiaxial states of stress and strain. Readers are introduced to the important considerations of multiaxial fatigue that differentiate it from uniaxial fatigue.

Multiaxial Fatigue

Author : Gail E. Leese
Publisher :
Page : 162 pages
File Size : 16,31 MB
Release : 1989
Category :
ISBN :

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Multiaxial Fatigue

Author : Keith John Miller
Publisher : ASTM International
Page : 760 pages
File Size : 33,56 MB
Release : 1985
Category : Technology & Engineering
ISBN : 9780803104440

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Advances in Fatigue Science and Technology

Author : C. Moura Branco
Publisher : Springer Science & Business Media
Page : 982 pages
File Size : 38,83 MB
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9400922779

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This volume contains the edited version of lectures and selected research contributions presented at the NATO ADVANCED STUDY INSTITUTE on ADVANCES IN FATIGUE SCIENCE AND TECHNOLOGY. held in Alvor. Portugal, 4th to 15th of April 1988. and organized by CEMUL - Center of Mechanics and Materials of The Technical University of Lisbon. The Institute was attended by 101 participants, including 15 lecturers. from 14 countries. The participants were leading scientists and engineers from universities, research institutions and industry. and also Ph.D~ students. Some participants presented papers during the Institute reporting the state-of-art of their research projects. All the sessions wel'e very active and quite extensive discussions on scientific aspects took place during the Institute. The Advanced Study Institute provided a forum for interaction among eminent scientists and engineers. from different schools of thought and young researchers. The Institute addressed the foundations and current state of the art of essential aspects related to fatigue science and technology, namely: Short Cracks, Metallurgical Aspects, Environmental Fatigue, Threshold Behaviour, Notch Behaviour. Creep and Fatigue Interactions at High Temperature, Multiaxial Fatigue, Low Cycle Fatigue, Methodology of Fatigue Testing, Variable Amplitude Fatigue, Fatigue of Advanced Materials. Elastic-Plastic Fatigue, and several engineering applications such as welded joints, energy systems, offshore structures, automotive industry, machine and engine components. This book is organized in three parts: Part I: Fundamentals of Fatigue Part II: Engineering Applications Part III: Research Contributions The research contributions covered most of the areas referred above.

Multiaxial Fatigue

Author : Darrell Socie
Publisher : SAE International
Page : 510 pages
File Size : 33,17 MB
Release : 1999-12-15
Category : Technology & Engineering
ISBN : 0768004535

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This book provides practicing engineers, researchers, and students with a working knowledge of the fatigue design process and models under multiaxial states of stress and strain. Readers are introduced to the important considerations of multiaxial fatigue that differentiate it from uniaxial fatigue.

Biaxial/Multiaxial Fatigue and Fracture

Author : Andrea Carpinteri
Publisher : Elsevier
Page : 517 pages
File Size : 38,68 MB
Release : 2003-03-19
Category : Technology & Engineering
ISBN : 0080527817

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The European Structural Integrity Society (ESIS) Technical Commitee on Fatigue of Engineering Materials and Structures (TC3) decided to compile a Special Technical Publication (ESIS STP) based on the 115 papers presented at the 6th International Conference on Biaxial/Multiaxial Fatigue and Fracture. The 25 papers included in the STP have been extended and revised by the authors. The conference was held in Lisbon, Portugal, on 25-28 June 2001, and was chaired by Manual De Freitas, Instituto Superior Tecnico, Lisbon. The meeting, organised by the Instituto Superior Tecnico and sponsored by the Portuguese Minesterio da Cienca e da Tecnologia and by the European Structural Integrity Society, was attended by 151 delegates from 20 countries. The papers in the present book deal with the theoretical, numerical and experimental aspects of the Multiaxial fatigue and fracture of engineering materials and structures. They are divided in to the following six sections; Multiaxial Fatigue of Welded Structures; High cycle Multiaxial fatigue; Non proportional and Variable-Amplitude loading; Defects, Notches, Crack Growth; Low Cycle Multiaxial Fatigue; Applications and Testing Methods. As is well-known, most engineering components and structures in the mechanical, aerospace, power generation, and other industries are subjected to multiaxial loading during their service life. One of the most difficult tasks in design against fatigue and fracture is to translate the information gathered from uniaxial fatigue and fracture tests on engineering materials into applications involving complex states of cyclic stress-strain conditions. This book is the result of co-operation between many researchers from different laboratories, universities and industries in a number of countries.

Fatigue Damage, Crack Growth and Life Prediction

Author : F. Ellyin
Publisher : Springer Science & Business Media
Page : 490 pages
File Size : 27,92 MB
Release : 1996-11-30
Category : Technology & Engineering
ISBN : 0412596008

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Fatigue failure is a multi-stage process. It begins with the initiation of cracks, and with continued cyclic loading the cracks propagate, finally leading to the rupture of a component or specimen. The demarcation between the above stages is not well-defined. Depending upon the scale of interest, the variation may span three orders of magnitude. For example, to a material scientist an initiated crack may be of the order of a micron, whereas for an engineer it can be of the order of a millimetre. It is not surprising therefore to see that investigation of the fatigue process has followed different paths depending upon the scale of phenomenon under investigation. Interest in the study of fatigue failure increased with the advent of industrial ization. Because of the urgent need to design against fatigue failure, early investiga tors focused on prototype testing and proposed failure criteria similar to design formulae. Thus, a methodology developed whereby the fatigue theories were proposed based on experimental observations, albeit at times with limited scope. This type of phenomenological approach progressed rapidly during the past four decades as closed-loop testing machines became available.

Multiaxial Fatigue and Deformation Testing Techniques

Author : Sreeramesh Kalluri
Publisher : ASTM International
Page : 310 pages
File Size : 22,66 MB
Release : 1997
Category : Deformations (Mechanics)
ISBN : 0803120451

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Fourteen papers from the May 1995 symposium focus on the advances that new materials testing equipment and digital computers have made possible. Representative topics: testing facilities for multiaxial loading of tubular specimens, biaxial deformation experiments over multiple string regimes, charac

Engineering Significance of Recent Multiaxial Research

Author : Leese GE
Publisher :
Page : 12 pages
File Size : 28,56 MB
Release : 1988
Category : Biaxial fatigue
ISBN :

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Recent advances in multiaxial fatigue testing capabilities have provided the means with which to evaluate multiaxial life prediction techniques. As a result of the recent surge in testing, several key concepts have emerged as common threads in the results of contemporary multiaxial fatigue investigators. These concepts are discussed within the framework of three major areas: (1) effective stress-strain, (2) plastic work and energy, and (3) critical plane approaches. While general agreement within the technical community has not been reached on many fine points of analytical techniques and predictive expressions, their sensitivity with respect to multiaxial spectrum characteristics, physical interpretation, and ease of application has been described. It is suggested that surveying the present accomplishments will provide valuable insight for steering the future directions of multiaxial low cycle fatigue research.