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Mueller, Inka: Inspection of piezoelectric transducers used for structural health monitoring systems. 2016
Inhalt
Title
Abstract
Kurzfassung
Contents
Nomenclature
Abbreviations
Greek parameters
Latin parameters
Tensors
Indices and Superscripts
1 Introduction
1.1 Motivation
1.2 Concept of structural health monitoring
1.3 Outline of the present work
2 Basics
2.1 Acousto-ultrasonics-based SHM
2.2 Classical approach for probability of detection
2.3 Physics of piezoelectric wafer active sensors
2.4 Electro-mechanical impedance (EMI) of PWAS
2.5 Types of PWAS faults
2.6 State of the art for PWAS inspection
3 Effects of defect PWAS on acousto-ultrasonics - experiments & simulations
3.1 Effects of breakage
3.2 Numerical model in time domain
3.3 Effects of debonding
3.4 Effects of degradation of the adhesive layer
3.5 Effects of insufficient bonding conditions
4 Inspection of PWAS using the EMI spectrum
4.1 Effects of defect PWAS on the EMI
4.2 Development of a physics-based analytical model of the susceptance
4.3 Validation of a physics-based analytical modelof the susceptance
4.4 Design of a numerical model to calculate the EMI of PWAS
4.5 New methods for PWAS inspection
5 Evaluation of the performancefor methods to inspect PWAS
5.1 Description of the general approach based on POD
5.2 Performance assessment based on numerical results
6 Applications
6.1 PWAS inspection under changing temperature
6.2 PWAS inspection after system setup
6.3 PWAS breakage caused by bending loads
6.4 PWAS breakage under cyclic loading
6.5 Detection of debonding
6.6 Door surround structure
7 Conclusion
References
Appendix
A.1 Experimental and numerical setups
A.2 Derivations
A.3 Material parameters