Ceramics in Nuclear and Alternative Energy Applications, Volume 27, Issue 5

Author:   Sharon Marra ,  Andrew Wereszczak ,  Edgar Lara-Curzio
Publisher:   John Wiley & Sons Inc
Edition:   Volume 27, Issue 5
Volume:   v. 27, issue 5
ISBN:  

9780470080559


Pages:   190
Publication Date:   15 December 2006
Format:   Paperback
Availability:   Out of stock   Availability explained
The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available.

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Ceramics in Nuclear and Alternative Energy Applications, Volume 27, Issue 5


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Overview

This volume focuses on recent developments and advances of ceramics and ceramic matrix composites for use in fission and fusion reactors, nuclear fuels and alternative energy applications. With the continued increasing demands for energy, nuclear energy has experienced a renewed interest. Recent developments associated with advanced fuel cycles have resulted in new research efforts on nuclear fuel materials. The effects of radiation on the properties of ceramics and ceramic matrix composites are also addressed.

Full Product Details

Author:   Sharon Marra ,  Andrew Wereszczak ,  Edgar Lara-Curzio
Publisher:   John Wiley & Sons Inc
Imprint:   Wiley-American Ceramic Society
Edition:   Volume 27, Issue 5
Volume:   v. 27, issue 5
Dimensions:   Width: 15.90cm , Height: 1.20cm , Length: 23.70cm
Weight:   0.279kg
ISBN:  

9780470080559


ISBN 10:   0470080558
Pages:   190
Publication Date:   15 December 2006
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Out of stock   Availability explained
The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available.

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Andrew A. Wereszczak received his Ph.D. in Materials Science & Engineering from the University of Delaware in 1992, and while his research is varied, the study and interpretation of the relationship between mechanical properties and microstructure (of monolithic ceramics, structural materials, and electronic materials) are common denominators. Micromechanical characterization of structural and armor ceramics using instrumented static and dynamic indentation (e.g., Hertzian) with acoustic emission analysis, and adapting those measured performances and damage mechanism analyses to strength, rolling contact fatigue, wear, machining, and ballistic performances is a primary objective. Additionally, ceramic strength and fatigue testing, ceramic fractographical and flaw population analyses, Weibull analysis strength-size-scaling, and probabilistic life prediction and design of structural ceramic components constitutive another primary research objective. In support of all these efforts, both conventional and microstructural-level finite element stress analyses and microstructure characterization are performed. He is the author or co-author of over 100 technical publications and has given over 80 presentations, and is the co-developer of µ-FEA software.

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