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Produktbild: Structural Health Monitoring Damage Detection Systems for Aerospace

Structural Health Monitoring Damage Detection Systems for Aerospace

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

23.09.2021

Abbildungen

XII, 284 p. 126 illus., 100 illus. in color.

Herausgeber

Markus G. R. Sause + weitere

Verlag

Springer

Seitenzahl

284

Maße (L/B/H)

24,1/16/2,2 cm

Gewicht

617 g

Auflage

1st ed. 2021

Sprache

Englisch

ISBN

978-3-030-72191-6

Beschreibung

Portrait


Markus Sause studied physics with a minor in computer science and received his doctorate in natural sciences. His habilitation dealt with the development and combination of in situ test methods for the characterization of fiber composites. Currently he is professor for Mechanical Engineering at the Institute for Materials Resource Management at the Faculty of Mathematics, Natural Sciences, and Materials Engineering of the University of Augsburg.


The focus of his research is the material behavior of hybrid fiber reinforced composites, the development of test methods for material characterization as well as modelling and data analysis. This ranges from the determination of micromechanical properties to the improvement of mechanical testing concepts at component level. A special focus is the application of in situ test methods for the study of damage progression. This ranges from the use of classical testing methods such as X-ray computed tomography, acoustic emission analysisand guided waves to specialized methods such as electromagnetic emission. Parallel to experimental approaches, multiscale and multiphysics modelling is used to derive insights on the principle of the test methods. Alongside this fundamental research, the developed methods are continuously improved for condition monitoring and structural health monitoring applications.


As of 2020, Markus Sause has authored more than 140 scientific publications among them two monographs and several book chapters.




Since 2017, he is Chairman of the Acoustic Emission Test Procedures Committee of the DGZfP and is a member of the Executive Board of the European Working Group on Acoustic Emission (EWGAE).


Elena Jasiūnienė received a Master degree in applied electronics, and a Ph.D. degree in Metrology and Measurements (all from the Kaunas University of Technology) and is currently a chief researcher at Prof. K. Baršauskas Ultrasound Research Institute and professor at Department ofElectronics Engineering, Faculty of Electrical and Electronics Engineering, Kaunas University of Technology. Throughout this career, Prof. Jasiūnienė has acquired a very extensive and diverse knowledge in non-destructive testing, x-ray computed tomography, and ultrasonic measurements.


Prof. Jasiūnienė has extensive experience in management of multidisciplinary research projects through supervision of national and international (EU) collaborative projects that have been widely recognized for their high impact output, and was involved in many projects concerning various applications of non-destructive testing techniques for aerospace industry, space research, nuclear plants, etc. Other activities include: expert of European Commission, scientific advisory officer EASN (European Aeronautics Science Network) Board of Directors, and expert for European Commission and Research Council of Lithuania.

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

23.09.2021

Abbildungen

XII, 284 p. 126 illus., 100 illus. in color.

Herausgeber

Verlag

Springer

Seitenzahl

284

Maße (L/B/H)

24,1/16/2,2 cm

Gewicht

617 g

Auflage

1st ed. 2021

Sprache

Englisch

ISBN

978-3-030-72191-6

Herstelleradresse

Springer-Verlag KG
Sachsenplatz 4-6
1201 Wien
AT

Email: ProductSafety@springernature.com

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  • Produktbild: Structural Health Monitoring Damage Detection Systems for Aerospace

  • Chapter 1. Introduction.- Chapter 2. Monitoring tasks in aerospace.- Chapter 3. Defect types.- Chapter 4. Aerospace requirements.- Chapter 5. Ultrasonics.- Chapter 6. Vibration based monitoring.- Chapter 7. Acoustic emission.- Chapter 8. Strain monitoring.- Chapter 9. Data reduction.- Chapter 10. Conclusions.