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Torres Arredondo, Miguel Angel: Acoustic emission testing and acousto-ultrasonics for structural health monitoring. 2013
Inhalt
Front page
Preface
Contents
Nomenclature
Abstract
Kurzfassung
1. Introduction
1.1. Structural Health Monitoring Concepts andTechniques
1.2. Literature Review
1.3. Objectives of the Thesis
1.4. Outline of the Thesis
1.5. Summary of Contributions Made by This Thesis
2. Theoretical Background
2.1. Introduction
2.2. Wave Propagation in Solid Media
2.3. Guided Waves Signal Attenuation
2.4. Ultrasonic Guided Wave Analysis Techniques
2.5. Sensors, Actuators and Measurement Chain
2.6. Signal Conditioning for Signal Post-processing
2.7. Dimension Reduction Techniques and Data-Driven Modelling
2.8. Visualization Techniques
3. Development of a Model for Guided Wave Propagation Analysis
3.1. Introduction
3.2. Model Development
3.3. Material Viscoelastic Damping Models
3.4. Energy Focusing Effect
3.5. Software Implementation of the Model
4. Modal Acoustic Emission for Source Identification and Localisation
4.1. Introduction
4.2. Mode Excitability
4.3. Time Delay Estimators and Onset Time Detectors
4.4. Time Frequency Analysis
4.5. Mode Identification by Supervised Neural Networks
4.6. Mode Identification by Modal Energy Orientation
4.7. Localisation
4.8. Acoustic Emission Identification by Unsupervised Neural Networks
5. Acousto-Ultrasonics for Damage Assessment
5.1. Introduction
5.2. Automatic Monitoring Strategy
5.3. Selection of the Actuation Signal
5.4. Temperature Effects
5.5. Additional Affecting Factors to Damage Detection Performance
5.6. Damage Detection Approach
6. Impact Load Monitoring
6.1. Introduction
6.2. Load Types and Load Monitoring Approaches
6.3. Feature Vectors Construction
6.4. System Modelling with Gaussian Processes
7. Experimental, Numerical and Application Examples
7.1. Introduction
7.2. Theoretical Model Validation, Dispersive Characteristics and Further Applications
7.3. Modal Acoustic Emission
7.4. Damage Assessment with Acousto-Ultrasonics
7.5. Impact Load Monitoring
8. Conclusions and Future Work
Bibliography
A. Appendix A
B. Appendix B