Ceramic Materials for Energy Applications IV -  - E-Book

Ceramic Materials for Energy Applications IV E-Book

0,0
136,99 €

oder
-100%
Sammeln Sie Punkte in unserem Gutscheinprogramm und kaufen Sie E-Books und Hörbücher mit bis zu 100% Rabatt.

Mehr erfahren.
Beschreibung

A collection of 14 papers from The American Ceramic Society's 38th International Conference on Advanced Ceramics and Composites, held in Daytona Beach, Florida, January 26-31, 2014. This issue includes papers presented in Symposia 6 - Advanced Materials and Technologies for Energy Generation, Conversion, and Rechargeable Energy Storage and Symposium 13 - Advanced Ceramics and Composites for Sustainable Nuclear Energy and Fusion Energy.

Sie lesen das E-Book in den Legimi-Apps auf:

Android
iOS
von Legimi
zertifizierten E-Readern

Seitenzahl: 304

Veröffentlichungsjahr: 2015

Bewertungen
0,0
0
0
0
0
0
Mehr Informationen
Mehr Informationen
Legimi prüft nicht, ob Rezensionen von Nutzern stammen, die den betreffenden Titel tatsächlich gekauft oder gelesen/gehört haben. Wir entfernen aber gefälschte Rezensionen.



Ceramic Materials for Energy Applications IV

A Collection of Papers Presented at the 38th International Conference on Advanced Ceramics and Composites January 27-31, 2014 Daytona Beach, Florida

Edited by

Hua-Tay Lin Yutai Katoh Josef Matyáš

Volume Editors

Andrew Gyekenyesi Michael Halbig

Copyright © 2015 by The American Ceramic Society. All rights reserved.

Published by John Wiley & Sons, Inc., Hoboken, New Jersey. Published simultaneously in Canada.

No part of this publication may be reproduced, stored in a retrieval system, or transmitted in any form or by any means, electronic, mechanical, photocopying, recording, scanning, or otherwise, except as permitted under Section 107 or 108 of the 1976 United States Copyright Act, without either the prior written permission of the Publisher, or authorization through payment of the appropriate per-copy fee to the Copyright Clearance Center, Inc., 222 Rosewood Drive, Danvers, MA 01923, (978) 750-8400, fax (978) 750-4470, or on the web at www.copyright.com. Requests to the Publisher for permission should be addressed to the Permissions Department, John Wiley & Sons, Inc., 111 River Street, Hoboken, NJ 07030, (201) 748-6011, fax (201) 748-6008, or online at http://www.wiley.com/go/permission.

Limit of Liability/Disclaimer of Warranty: While the publisher and author have used their best efforts in preparing this book, they make no representations or warranties with respect to the accuracy or completeness of the contents of this book and specifically disclaim any implied warranties of merchantability or fitness for a particular purpose. No warranty may be created or extended by sales representatives or written sales materials. The advice and strategies contained herein may not be suitable for your situation. You should consult with a professional where appropriate. Neither the publisher nor author shall be liable for any loss of profit or any other commercial damages, including but not limited to special, incidental, consequential, or other damages.

For general information on our other products and services or for technical support, please contact our Customer Care Department within the United States at (800) 762-2974, outside the United States at (317) 572-3993 or fax (317) 572-4002.

Wiley also publishes its books in a variety of electronic formats. Some content that appears in print may not be available in electronic formats. For more information about Wiley products, visit our web site at www.wiley.com.

Library of Congress Cataloging-in-Publication Data is available.

ISBN: 978-1-119-04027-9 ISSN: 0196-6219

Contents

PREFACE

INTRODUCTION

CERAMICS FOR ENERGY STORAGE AND CONVERSION

TOWARDS THE CONVERSION OF A SOLID OXIDE CELL INTO A HIGH TEMPERATURE BATTERY

ABSTRACT

INTRODUCTION

THEORY

EXPERIMENTAL

RESULTS

CONCLUSION & OUTLOOK

ACKNOWLEDGEMENTS

BIBLIOGRAPHY

DESIGN AND FABRICATION OF ALL-SOLID-STATE RECHARGEABLE LITHIUM BATTERIES FOR FUTURE APPLICATIONS

ABSTRACT

INTRODUCTION

EXPERIMENTAL

RESULTS AND DISCUSSION

SUMMARY

ACKNOWLEDGEMENTS

REFERENCES

NANOSTRUCTURED LiCoO

2

CATHODE BY HYDROTHERMAL PROCESS

ABSTRACT

1. INTRODUCTION

2. EXPERIMENTAL PROCEDURE

3 RESULTS AND DISCUSSION

4 CONCLUSIONS

REFERENCES

THERMOELECTRIC PROPERTIES OF Na

0.8

Co

1-x

Fe

x

O

2

CERAMIC PREPARED BY SPARK PLASMA SINTERING

ABSTRACT

INTRODUCTION

EXPERIMENTAL PROCEDURE

RESULTS AND DISCUSSION

CONCLUSIONS

ACKNOWLEDGEMENT

REFERENCES

EFFECTS OF SINTERING TEMPERATURE ON THERMOELECTRIC PROPERTIES OF NANOCRYSTALLINE Ca

0.9

Yb

0

.

1

MnO

3

PREPARED BY CO-PRECIPITATION METHOD

ABSTRACT

1. INTRODUCTION

2. EXPERIMENTAL PROCEDURE

3. RESULTS AND DISCUSSION

4. CONCLUSIONS

ACKNOWLEDGEMENTS

REFERENCES

EFFECT OF FILM THICKNESS ON THE PHOTOCATALYTIC PERFORMANCE OF Ti0

2

THIN FILMS DEPOSITED BY SPIN COATING

ABSTRACT

INTRODUCTION

EXPERIMENTAL

RESULTS AND DISCUSSION

CONCLUSIONS

ACKNOWLEDGEMENTS

REFERENCES

EFFECT OF HEAT TREATMENT TEMPERATURE ON PROPERTIES OF NANOCRYSTALLINE, PHOTOACTIVE, TITANIA, THIN FILMS ON POLYMER AND FUSED QUARTZ

ABSTRACT

INTRODUCTION

EXPERIMENTAL PROCEDURE

CHARACTERIZATION

RESULTS AND DISCUSSION

CONCLUSIONS

ACKNOWLEDGEMENTS

REFERENCES

DEVELOPMENT OF ELECTRO-OPTICAL SINGLE CRYSTALS FOR ENERGY SAVING

ABSTRACT

1. INTRODUCTION

2.

β

-Ga

2

0

3

AS “NEW” SEMICONDUCTOR MATERIAL

3. SINGLE-CRYSTAL PHOSPHORS

4. MAGNETO-OPTICAL SINGLE CRYSTALS FOR OPTICAL ISOLATORS

5. CONCLUSIONS

Note

REFERENCES

CERAMICS AND COMPOSITES FOR NUCLEAR ENERGY

MODELING STRUCTURAL LOADING OF USED NUCLEAR FUEL UNDER CONDITIONS OF NORMAL TRANSPORTATION

ABSTRACT

INTRODUCTION

MODELING APPROACH

MODELING INPUTS

MODEL VALIDATION

RESULTS OF INITIAL DEMONSTRATION

SENSITIVITY ANALYSES

CONCLUSIONS

ACKNOWLEDGEMENTS

REFERENCES

FLEXURAL STRENGTH OF COMPOSITE TUBES FOR SMR APPLICATIONS USING PURE BENDING: DRAFT ASTM TEST METHOD

ABSTRACT

INTRODUCTION

ASTM STANDARD TEST METHOD

SCOPE AND APPLICATION

EXPERIMENTAL FACTORS

TEST SPECIMEN GEOMETRIES

TEST EQUIPMENT AND PROCEDURES

CALCULATION, REPORTING, PRECISION AND BIAS

CURRENT STATUS AND FUTURE WORK

CONCLUSIONS

ACKNOWLEDGEMENT

REFERENCES

HOOP TENSILE STRENGTH OF CERAMIC MATRIX COMPOSITE TUBES FOR LWRS APPLICATIONS USING ELASTOMERIC INSERTS: DRAFT ASTM TEST METHOD

ABSTRACT

INTRODUCTION

ASTM STANDARD TEST METHOD

SCOPE AND APPLICATION

EXPERIMENTAL FACTORS

TEST SPECIMEN GEOMETRIES

TEST EQUIPMENT AND PROCEDURES

CALCULATION, REPORTING, PRECISION AND BIAS

CURRENT STATUS AND FUTURE WORK

CONCLUSIONS

ACKNOWLEDGEMENT

REFERENCES

CERAMIC MATRIX COMPOSITES IN Ti-B-Cr AND Ti-B-Nb SYSTEMS FABRICATED “IN SITU” BY SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS

ABSTRACT

INTRODUCTION

EXPERIMENTAL PROCEDURE

RESULTS AND DISCUSSION

HYPOTHETICAL REACTION MECHANISM

CONCLUSIONS

ACKNOWLEDGEMENTS

References:

COMPARISON OF SHEAR STRENGTH OF CERAMIC JOINTS DETERMINED BY VARIOUS TEST METHODS WITH SMALL SPECIMENS

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!

Lesen Sie weiter in der vollständigen Ausgabe!