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Evaluating Materials Properties by Dynamic Testing (ESIS 20)

Evaluating Materials Properties by Dynamic Testing (ESIS 20) PDF Author: E. van Walle
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 272

Book Description
Expert discussion and novel solutions for dynamic testing and analysis Evaluating Materials Properties by Dynamic Testing is a collection of fifteen papers incorporating a concentrated body of knowledge to provide a single-volume reference for the field. Presented by the ESIS, this book covers standard methods of dynamic testing and analysis of test data. The work provides a variety of perspectives and covers a broad range of applications in engineering and materials science, offering novel solutions to specific problems. Peer-reviewed by international experts, this book is an authoritative, high-utility reference for anyone in the field.

Evaluating Materials Properties by Dynamic Testing (ESIS 20)

Evaluating Materials Properties by Dynamic Testing (ESIS 20) PDF Author: E. van Walle
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 272

Book Description
Expert discussion and novel solutions for dynamic testing and analysis Evaluating Materials Properties by Dynamic Testing is a collection of fifteen papers incorporating a concentrated body of knowledge to provide a single-volume reference for the field. Presented by the ESIS, this book covers standard methods of dynamic testing and analysis of test data. The work provides a variety of perspectives and covers a broad range of applications in engineering and materials science, offering novel solutions to specific problems. Peer-reviewed by international experts, this book is an authoritative, high-utility reference for anyone in the field.

From Charpy to Present Impact Testing

From Charpy to Present Impact Testing PDF Author: D. Francois
Publisher: Elsevier
ISBN: 008052897X
Category : Technology & Engineering
Languages : en
Pages : 497

Book Description
From Charpy to Present Impact Testing contains 52 peer-reviewed papers selected from those presented at the Charpy Centenary Conference held in Poitiers, France, 2-5 October 2001. The name of Charpy remains associated with impact testing on notched specimens. At a time when many steam engines exploded, engineers were preoccupied with studying the resistance of steels to impact loading. The Charpy test has provided invaluable indications on the impact properties of materials. It revealed the brittle ductile transition of ferritic steels. The Charpy test is able to provide more quantitative results by instrumenting the striker, which allows the evolution of the applied load during the impact to be determined. The Charpy test is of great importance to evaluate the embrittlement of steels by irradiation in nuclear reactors. Progress in computer programming has allowed for a computer model of the test to be developed; a difficult task in view of its dynamic, three dimensional, adiabatic nature. Together with precise observations of the processes of fracture, this opens the possibility of transferring quantitatively the results of Charpy tests to real components. This test has also been extended to materials other than steels, and is also frequently used to test polymeric materials. Thus the Charpy test is a tool of great importance and is still at the root of a number of investigations; this is the reason why it was felt that the centenary of the Charpy test had to be celebrated. The Société Française de Métallurgie et de Matériaux decided to organise an international conference which was put under the auspices of the European Society for the Integrity of Structures (ESIS). This Charpy Centenary Conference (CCC 2001) was held in Poitiers, at Futuroscope in October 2001. More than 150 participants from 17 countries took part in the discussions and about one hundred presentations were given. An exhibition of equipment showed, not only present day testing machines, but also one of the first Charpy pendulums, brought all the way from Imperial College in London. From Charpy to Present Impact Testing puts together a number of significant contributions. They are classified into 6 headings: •Keynote lectures,•Micromechanisms,•Polymers,•Testing procedures,•Applications,•Modelling.

Fracture Mechanics: Applications and Challenges

Fracture Mechanics: Applications and Challenges PDF Author: M. Fuentes
Publisher: Elsevier
ISBN: 0080531997
Category : Technology & Engineering
Languages : en
Pages : 275

Book Description
This book contains 15 fully peer-reviewed Invited Papers which were presented at the 13th Biennial European Conference on Fracture and is a companion to the CD-ROM http://www.elsevier.com/locate/isbn/008043701xProceedings. The organisers of the ECF 13 opted from the very beginning for an application-orientated conference, and consequently, this book contributes to the understanding of fracture phenomena, and disseminates fracture concepts and their application to the solution of engineering problems to practitioners in a wide range of fields. The fields covered in this book can be broadly classified into: elastic-plastic fracture mechanics, fracture dynamics, fatigue and interactive processes, failure, structural integrity, coatings and materials, with applications to the following industrial sectors: transport, aerospace engineering, civil engineering, pipelines and automotive engineering.

Pendulum Impact Machines

Pendulum Impact Machines PDF Author: T. A. Siewert
Publisher: ASTM International
ISBN: 0803134029
Category : Impact
Languages : en
Pages : 105

Book Description


Fatigue Design and Reliability

Fatigue Design and Reliability PDF Author: G. Marquis
Publisher: Elsevier
ISBN: 008053161X
Category : Technology & Engineering
Languages : en
Pages : 251

Book Description
This volume represents a selection of papers presented at the Third International Symposium on Fatigue Design, Fatigue Design 1998, held in Espoo, Finland, 26-29 May, 1998.One objective of this symposium series was to help bridge the gap that sometimes exists between researchers and engineers responsible for designing components against fatigue failure. The 21 selected papers provide an up-to-date survey of engineering practice and a preview of design methods that are advancing toward application. Reliability was selected as a key theme for FD'98. During the design of components and structures, it is not sufficient to combine mean material properties, average usage parameters, and pre-selected safety factors. The engineer must also consider potential scatter in material properties, different end users, manufacturing tolerances and uncertainties in fatigue damage models. Judgement must also be made about the consequences of potential failure and the required degree of reliability for the structure or component during its service life. Approaches to ensuring reliability may vary greatly depending on the structure being designed. Papers in this volume intentionally provide a multidisciplinary perspective on the issue. Authors represent the ground vehicle, heavy equipment, power generation, ship building and other industries. Identical solutions cannot be used in all cases because design methods must always provide a balance between accuracy and simplicity. The point of balance will shift depending on the type of input data available and the component being considered.

Application of Fracture Mechanics to Polymers, Adhesives and Composites

Application of Fracture Mechanics to Polymers, Adhesives and Composites PDF Author: D R Moore
Publisher: Elsevier
ISBN: 0080553079
Category : Technology & Engineering
Languages : en
Pages : 299

Book Description
Application of Fracture Mechanics to Polymers, Adhesives and Composites

Fracture Mechanics Testing Methods for Polymers, Adhesives and Composites

Fracture Mechanics Testing Methods for Polymers, Adhesives and Composites PDF Author: D.R. Moore
Publisher: Elsevier
ISBN: 0080531962
Category : Technology & Engineering
Languages : en
Pages : 389

Book Description
This book is an overview of ESIS Technical Committee 4's activities since the mid-1980s. A wide range of tests is described and the numerous authors is a reflection of the wide and enthusiastic support we have had. With the establishment of the Technical Committee 4, two major areas were identified as appropriate for the activity. Firstly there was an urgent need for standard, fracture mechanics based, test methods to be designed for polymers and composites. A good deal of academic work had been done, but the usefulness to industry was limited by the lack of agreed standards. Secondly there was a perceived need to explore the use of such data in the design of plastic parts. Some modest efforts were made in early meetings to explore this, but little progress was made. In contrast things moved along briskly in the standards work and this has dominated the activity for the last fourteen years. The design issue remains a future goal.

Pendulum Impact Testing

Pendulum Impact Testing PDF Author: T. A. Siewert
Publisher: ASTM International
ISBN: 0803128649
Category : Dynamic testing
Languages : en
Pages : 402

Book Description


Biaxial/Multiaxial Fatigue and Fracture

Biaxial/Multiaxial Fatigue and Fracture PDF Author: Andrea Carpinteri
Publisher: Elsevier
ISBN: 0080527817
Category : Technology & Engineering
Languages : en
Pages : 517

Book Description
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.

Time-Dependent Fracture Mechanics

Time-Dependent Fracture Mechanics PDF Author: Dominique P. Miannay
Publisher: Springer Science & Business Media
ISBN: 1461301556
Category : Technology & Engineering
Languages : en
Pages : 480

Book Description
Intended for engineers, researchers, and graduate students dealing with materials science, structural design, and nondestructive testing and evaluation, this book represents a continuation of the author's "Fracture Mechanics" (1997). It will appeal to a variety of audiences: The discussion of design codes and procedures will be of use to practicing engineers, particularly in the nuclear, aerospace, and pipeline industries; the extensive bibliography and discussion of recent results will make it a useful reference for academic researchers; and graduate students will find the clear explanations and worked examples useful for learning the field. The book begins with a general treatment of fracture mechanics in terms of material properties and loading and provides up-to-date reviews of the ductile-brittle transition in steels and of methods for analyzing the risk of fracture. It then discusses the dynamics of fracture and creep in homogeneous and isotropic media, including discussions of high-loading-rate characteristics, the behavior of stationary cracks in elastic media under stress, and the propagation of cracks in elastic media. This is followed by an analysis of creep and crack initiation and propagation, describing, for example, the morphology and incubation times of crack initiation and growth and the effects of high temperatures. The book concludes with treatments of cycling deformation and fatigue, creep-fatigue fractures, and crack initiation and propagation. Problems at the end of each chapter serve to reinforce and test the student's knowledge and to extend some of the discussions in the text. Solutions to half of the problems are provided.