In Situ Monitoring of Fiber-Reinforced Composites: Theory, Basic Concepts, Methods, and Applications

Author:   Markus G.R. Sause
Publisher:   Springer International Publishing AG
Edition:   Softcover reprint of the original 1st ed. 2016
Volume:   242
ISBN:  

9783319809274


Pages:   633
Publication Date:   31 May 2018
Format:   Paperback
Availability:   Manufactured on demand   Availability explained
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In Situ Monitoring of Fiber-Reinforced Composites: Theory, Basic Concepts, Methods, and Applications


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“…a comprehensive and well written book, which…will be useful reading for both researchers entering the field and experienced specialists looking for new ideas….a valuable and long-lasting contribution to experimental mechanics.” – Stepan Lomov, KU Leuven This expert volume, an enhanced Habilitation thesis by the head of the Materials Testing Research Group at the University of Augsburg, provides detailed coverage of a range of inspection methods for insitu characterization of fiber-reinforced composites. The failure behavior of fiber reinforced composites is a complex evolution of microscopic damage phenomena. Beyond the use of classical testing methods, the ability to monitor the progression of damage insitu offers new ways to interpret the materials failure modes. Methods covered include digital image correlation, acoustic emission, electromagnetic emission, computed tomography, thermography, shearography, and promising method combinations. For each method, the discussion includes operational principles and practical applications for quality control as well as thoughtful assessment of the method's strengths and weakness so that the reader is equipped to decide which method or methods are most appropriate in a given situation. The book includes extensive appendices covering common experimental parameters influencing comparability of acoustic emission measurements; materials properties for modeling; and an overview of terms and abbreviations.

Full Product Details

Author:   Markus G.R. Sause
Publisher:   Springer International Publishing AG
Imprint:   Springer International Publishing AG
Edition:   Softcover reprint of the original 1st ed. 2016
Volume:   242
Dimensions:   Width: 15.50cm , Height: 3.30cm , Length: 23.50cm
Weight:   9.708kg
ISBN:  

9783319809274


ISBN 10:   331980927
Pages:   633
Publication Date:   31 May 2018
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

Preface.- Acknowledgments.- 1. Introduction.- 2. Failure of fiber reinforced composites.- 3. Digital image correlation.- 4. Acoustic emission.- 5. Electromagnetic emission.- 6. Computed tomography.- 7. Combination of methods.- Appendix A. Acoustic emission: Parameters of influence.- Appendix B. Material properties.- Appendix C. Acoustic emission signal parameters.- Appendix D. Definitions and Abbreviations.

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Author Information

Dr. habil. Markus Sause studied Physics at the University of Augsburg and earned his doctoral degree in 2010 in Experimental Physics at the same institution. He received the “Erich-Krautz-Preis” in 2010 for his outstanding contribution to the interpretation of acoustic emission of fiber-reinforced materials. In 2015 he was awarded his Habilitation in Experimental Physics. He is lecturer at University of Augsburg and head of the Materials Testing Research Group at the Chair for Experimental Physics II. Since 2014 he has been a member of the EWGAE executive committee and active in several other committees dedicated to the testing and analysis of fiber-reinforced materials. His research interests span the mechanics of fiber-reinforced composites, their destructive and non-destructive testing as well as numerical methods to interpret the materials behavior. A special focus is given to bridge the gap between destructive testing approaches and non-destructive inspection to perform insituanalysis of materials failure.

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