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Dariusz M. Jarzabek - Ceramic Matrix Composites: Materials, Manufacturing and Engineering

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Dariusz M. Jarzabek Ceramic Matrix Composites: Materials, Manufacturing and Engineering

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Composite materials are engineered from two or more constituents with significantly altered physical or chemical properties within the finished structure. Due to their special mechanical and physical properties they have the potential to replace conventional materials. This book, written by experts from all over the world, presents fundamentals and recent advances on ceramic matrix composites.

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List of contributing authors

Brahim Assa

Qatar Environment & Energy Research Institute (QEERI)

and

College of Science and Engineering

Hamad Bin Khalifa University

Qatar Foundation

P.O. Box 5825

Doha, Qatar

e-mail:

Mohamed Bououdina

Department of Physics

Coolege of Science

University of Bahrain

P.O. Box 32038

Sakheer Campus

Kingdom of Bahrain

e-mail:

Wojciech Dera

Institute of Fundamental Technological Research

Polish Academy of Sciences

Poland

Hengzhong Fan

State Key Laboratory of Solid Lubrication

Lanzhou Institute of Chemical Physics

Chinese Academy of Science

Lanzhou 730000

China

University of Chinese Academy of Sciences

Beijing 100049

China

Yuan Fang

State Key Laboratory of Solid Lubrication

Lanzhou Institute of Chemical Physics

Chinese Academy of Science

Lanzhou 730000

China

University of Chinese Academy of Sciences

Beijing 100049

China

Gilbert Fantozzi

INSA de Lyon

MATEIS (UMR CNRS 5510)

7 avenue Jean Capelle

69621 VILLEURBANNE Cedex

France

Jos Maria da Fonte Ferreira

Department of Materials and Ceramic

Engineering, CICECO

University of Aveiro

3810-193 Aveiro

Portugal

e-mail: jmf@ua.pt

Nathalie Godin

INSA de Lyon

MATEIS (UMR CNRS 5510)

7 avenue Jean Capelle

69621 VILLEURBANNE Cedex

France

e-mail: nathalie.godin@insa-lyon.fr

Litian Hu

State Key Laboratory of Solid Lubrication

Lanzhou Institute of Chemical Physics

Chinese Academy of Science

Lanzhou 730000

China

Dariusz M. Jarzbek

Institute of Fundamental Technological Research

Polish Academy of Sciences

Poland

e-mail: djarz@ippt.pan.pl

Ajay Kaushal

Department of Materials and Ceramic

Engineering, CICECO

University of Aveiro

3810-193 Aveiro

Portugal

e-mail: Ajay.kaushal@ua.pt

Mohamed RMili

INSA de Lyon

MATEIS (UMR CNRS 5510)

7 avenue Jean Capelle

69621 VILLEURBANNE Cedex

France

Pascal Reynaud

INSA de Lyon

MATEIS (UMR CNRS 5510)

7 avenue Jean Capelle

69621 VILLEURBANNE Cedex

France

Junjie Song

State Key Laboratory of Solid Lubrication

Lanzhou Institute of Chemical Physics

Chinese Academy of Science

Lanzhou 730000

China

University of Chinese Academy of Sciences

Beijing 100049

China

Yongsheng Zhang

State Key Laboratory of Solid Lubrication

Lanzhou Institute of Chemical Physics

Chinese Academy of Science

Lanzhou 730000

China

e-mail: zhysh@licp.cas.cn

Editor

Prof. Dr. J. Paulo Davim

University of Aveiro

Department of Mechanical Engineering

Campus Santiago

3810-193 Aveiro, Portugal

pdavim@ua.pt

ISBN 978-3-11-035284-9

e-ISBN (PDF) 978-3-11-035300-6

e-ISBN (EPUB) 978-3-11-038346-1

Set-ISBN 978-3-11-035301-3

ISSN 2192-8983

Library of Congress Cataloging-in-Publication Data

A CIP catalog record for this book has been applied for at the Library of Congress.

Bibliographic information published by the Deutsche Nationalbibliothek

The Deutsche Nationalbibliothek lists this publication in the Deutsche Nationalbibliografie;

detailed bibliographic data are available on the Internet at http://dnb.dnb.de.

2016 Walter de Gruyter GmbH, Berlin/Boston

Cover image: gettyimages/thinkstockphotos, Abalone Shell

Typesetting: PTP-Berlin, Protago-TEX-Production GmbH, Berlin

www.degruyter.com

Also of Interest Series Advanced Composites J Paulo Davim Ed ISSN - photo 1

Also of Interest

Series Advanced Composites J Paulo Davim Ed ISSN 2192-8983 Published - photo 2

Series: Advanced Composites .

J. Paulo Davim (Ed.)

ISSN 2192-8983

Published titles in this series:

Vol. 4: Machinability of Fibre-Reinforced Plastics (2015) Ed. by Davim, J. Paulo

Vol. 3: Metal Matrix Composites (2014) Ed. by Davim, J. Paulo

Vol. 2: Biomedical Composites (2013) Ed. by Davim, J. Paulo

Vol. 1: Nanocomposites (2013) Ed. by Davim, J. Paulo/Charitidis, Constantinos A.

Nanomaterials in Joining Constantinos A Charitidis Ed 2015 ISBN - photo 3

Nanomaterials in Joining .

Constantinos A. Charitidis (Ed.), 2015

ISBN 978-3-11-033960-4, e-ISBN 978-3-11-033972-7

Nanoparticles Raz Jelinek 2015 ISBN 978-3-11-033002-1 e-ISBN - photo 4

Nanoparticles .

Raz Jelinek, 2015

ISBN 978-3-11-033002-1, e-ISBN 978-3-11-033003-8

Nanocarbon-Inorganic Hybrids Next Generation Composites for Sustainable - photo 5

Nanocarbon-Inorganic Hybrids .

Next Generation Composites for Sustainable Energy Applications

Eder, Schlgl (Eds.), 2014

ISBN 978-3-11-026971-0, e-ISBN 978-3-11-026986-4

Glass Selected Properties and Crystallization Schmelzer Ed 2014 ISBN - photo 6

Glass .

Selected Properties and Crystallization

Schmelzer (Ed.), 2014

ISBN 978-3-11-029838-3, e-ISBN 978-3-11-029858-1

Nanotechnology Kumar Challa Editor- Reviews in-Chief ISSN 2191-9089 e-ISSN - photo 7

Nanotechnology

Kumar, Challa (Editor- Reviews in-Chief)

ISSN 2191-9089, e-ISSN 2191-9097

Advanced Composites

Davim Ceramic Matrix Materials

Index

ability,

absorbance,

acceptors,

acetate,

acoustic emission,

acoustic energy,

acoustic signature,

alumina-matrix composites,

amine,

annealing,

anode,

aqueous suspension,

atomic force microscope,

attenuation,

attenuation coefficient,

autonomic,

avalanche fibers ruptures,

batteries,

beam,

Benioff law,

bundles,

cantilever,

carbon nanotubes,

ceramic laminates,

ceramic matrix composites,

characteristic time,

chemistry,

chlorobenzene,

clusters,

coefficient of emission,

collective fiber breaks,

colloidal processing,

composite,

composite lifetime,

composition,

compression of the micropillar,

concentration,

conducting polymer,

conversion,

copolymerization,

covalent bonds,

crack,

crack opening modes,

crack propagating,

critical aspect,

critical interfacial shear strength,

critical time,

criticality,

cross-sectional indentation,

current densities,

cyclic fatigue,

cyclic fatigue tests,

damage,

damage discrimination,

damage insensitivity,

damage mechanisms,

damage parameter,

damaged,

deformation,

delamination,

diffuse matrix cracking,

droplets were,

effective numbers of the weak layers,

efficiency,

efficiently restoring conductivity,

electric field,

electrical properties,

electrocatalytic,

electroceramic,

electrode,

electron transitions,

emulsion,

energy,

energy attenuation,

energy-based approach,

epoxy matrix,

failure hypotheses,

Fermi level,

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