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자료명/저자사항
Self healing materials : an alternative approach to 20 centuries of materials science / S. van der Zwaag, editor 인기도
발행사항
Dordrecht, The Netherlands : Springer, c2007
청구기호
620.118 I61s
자료실
[서울관] 서고(열람신청 후 1층 대출대)
형태사항
xii, 385 p. : ill., charts ; 25 cm + 1 CD-ROM
총서사항
Springer series in materials science, 0933-033X ; 100
표준번호/부호
ISBN: 9781402062490 (HB)
ISBN: 9781402062506 (e-book)
제어번호
MONO2200801753
주기사항
Title on accompanying CD-ROM label: Proceedings of the first International Conference on Self Healing Materials, 18-20 April, 2007, Noordwijk aan Zee, The Netherlands
CD-ROM editors: Alexander J.M. Schmets & Sybrand van der Zwaag; artwork: Geeta van der Zaken
Includes bibliographical references and index
부록/보유자료:Proceedings of the first International Conference on Self Healing Materials  바로보기

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Acknowledgement v

Foreword vii

Preface ix

An Introduction to Material Design Principles: Damage

Prevention versus Damage Management 1

Sybrand van der Zwaag

Self Healing Polymers and Composites 19

HM Andersson, MW Keller, JS Moore, NR Sottos, and SR White

Re-Mendable Polymers 45

Sheba D. Bergman and Fred Wudl

Thermally Induced Self Healing of Thermosetting Resins

and Matrices in Smart Composites 69

FR Jones, W Zhang, and SA Hayes

lonomers as Self Healing Polymers 95

Russell Varley

Self Healing Fibre-reinforced Polymer Composites: an Overview 115

Ian P. Bond, Richard S. Trask, Hugo R. Williams, and Gareth J. Williams

Self Healing Polymer Coatings 139

Rolf A.T.M van Benthem, Weihua (Marshall) Ming, and Gijsbertus (Bert)

de With

Self Healing in Concrete Materials 161

Victor C. Li and En-Hua Yang

Self Healing Concrete: A Biological Approach 195

Henk M Jonkers

Exploring Mechanism of Healing in Asphalt Mixtures

and Quantifying its Impact 205

Dallas N. Little and Amit Bhasin

Self Healing in Aluminium Alloys 219

Roger Lumley

Crack and Void Healing in Metals 255

Hua Wang, Peizheng Huang, and Zhonghua Li

Advances in Transmission Electron Microscopy: Self healing

or is Prevention Better than Cure? 279

Jeff Th.M. De Hosson and Hiroyuki Y. Yasuda

Self Healing in Coatings at High Temperatures 309

Wim G. Sloof

Hierarchical Structure and Repair of Bone: Deformation, Remodelling,

Healing 323

Peter Fratzl and Richard Weinkamer

Modeling of Self Healing of Skin Tissue 337

F J Vermolen, WG van Rossum, E Javierre, and JA Adam

Numerical Modelling of Self Healing Mechanisms 365

Joris JC Remmers and Rene de Borst

About the Authors 381

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  • 출판사 책소개 (알라딘 제공)

    This book, the first published in this new sub-field of materials science, presents a coherent picture of the design principles and resulting properties of self-healing materials over all material classes, and offsets them to the current design principles for structural materials with improved mechanical properties. The book is not only a valuable asset for professional materials scientists but it is also suitable as a text book for courses at MSc level.



    “As a general principle natural selection is continually trying to economise every part of the organisation. ” That was Charles Darwin, writing over 100 years ago about e- ciency innature. Naturalmaterialsareremarkably ef?cient. Byef?cient wemeanthat they ful?l the complex requirements posed by the way plants and animals function, and that they do so using as little material as possible. Many of these requirements are mechanical in nature: the need to support static and dynamic loads created by the mass of the organism or by wind loading, the need to store and release elastic energy, the need to ?ex through large angles, the need to resist buckling and fracture, and to survive damage. Few optimisation algorithms have been more successful than that of “survival of the ?ttest”. The structural materials of nature exemplify this op- misation; even today, few man-made materials do better than those of nature in the function that they ?ll. And of all the remarkable properties of natural materials, one is truly exceptional ? that of the ability for self-repair. One recurring goal of material development has been to emulate the materials of nature. Among these, the most illusive is that of self-repair. In approaching this it is well to be aware of the nature of the differences that separate the structural materials of man and those of nature.

    New feature

    This book, the first in this new field of materials science, aims to present a coherent picture of the design principles and resulting properties of self healing materials over all material classes, and to offset them to the current design principles for structural materials with improved mechanical properties. Where appropriate a comparison to natural materials is made. As such it will be a landmark and a reference work in the coming years.
    The book consists of a number of invited contributions from leading experts in the field. While each chapter describes a separate approach or a different aspect of self healing materials, the common structure of each chapter creates a coherent and consistent picture of this emerging and challenging field. Hence the book is not only a valuable asset for professional materials scientists but it is also suitable as a text book for courses at MSc level.



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