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Structural health monitoring for advanced composite structures

Author: M H Aliabadi; Z Sharif-Khodaei
Publisher: London ; Hackensack, NJ : World Scientific Publishing Europe Ltd., [2018]
Series: Computational and experimental methods in structures, v. 8.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
"Structural health monitoring (SHM) is a relatively new and alternative way of non-destructive inspection (NDI). It is the process of implementing a damage detection and characterization strategy for composite structures. The basis of SHM is the application of permanent fixed sensors on a structure, combined with minimum manual intervention to monitor its structural integrity. These sensors detect changes to the  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Structural health monitoring for advanced composite structures.
London ; Hackensack, NJ : World Scientific Publishing Europe Ltd., [2018]
(DLC) 2017023319
(OCoLC)991675662
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: M H Aliabadi; Z Sharif-Khodaei
ISBN: 9781786343932 1786343932 9781786343949 1786343940
OCLC Number: 1020172633
Description: 1 online resource : illustrations (some color).
Contents: Intro; Contents; Preface; About the Editors; Chapter 1. Damage Detection and Characterization with Piezoelectric Transducers: Active Sensing; 1. Introduction; 2. Overview of Ultrasonic Guided Wave Damage Detection; 2.1. Fundamentals of Guided Waves; 2.2. Influence of Temperature; 3. Methodologies for Damage Detection; 3.1. UGW Damage Detection Methodologies: Baseline Methods; 3.1.1. Tomography Approach; 3.1.2. Delay-and-sum; 3.2. UGW Damage Detection Methodologies: Baseline Free; 3.2.1. Time Reversal Method; 3.2.2. Mode Conversion-based Techniques; 3.2.3. Sensor Array Baseline-free Techniques 3.3. Instantaneous Baseline Method; 4. Optimization; 4.1. Optimal Transducer Arrangement: Maximum Area Coverage (MAC) Approach; 5. Results and Validation on a Composite Stiffened Panel; 5.1. Composite Stiffened Panel; 5.1.1. Instantaneous Baseline Approach; 5.1.2. DAS Baseline Approach; 6. Conclusion; References; Chapter 2. Modeling Guided Wave Propagation in Composite Structures Using Local Interaction Simulation Approach; 1. Introduction; 1.1. Fundamentals of Guided Waves in Isotropic Structures; 1.2. Challenges of Guided Wave SHM in Composite Structures 1.3. Modeling Techniques for Wave Propagation in Composites; 2. UM-LISA Formulation; 2.1. Overview of UM-LISA Framework; 2.2. LISA Formulation Basis for Composite Lamina with Arbitrary Orientation; 2.3. Adding Damping Effects into the LISA Formulation; 2.3.1. UM-LISA Solution Procedure and Parallel CUDA Implementation; 3. Attenuated Guided Wave Propagation in Composite Structures; 3.1. Experiments with Scanning Laser Doppler Vibrometry; 3.2. Guided Waves in Composite Laminates; 3.3. Validation of Guided Wave Generation of Hybrid LISA Solution Against SLDV 3.4. Comparison of Anisotropic Damping Effects in Guided Wave Propagation; 4. Artificial Absorbing Boundary for Wave Propagation Simulation; 5. Dealing with Complexity: Guided Wave Interaction with Damage and Structural Features; 6. Summary and Concluding Remarks; References; Chapter 3. Numerical Modeling of Ultrasonic Wave Propagation in Composites; 1. Introduction; 2. Background of Wavefield Modeling; 3. Waves in Anisotropic Media; 3.1. Visualizing the Modal Wave Velocities; 3.2. Solution of Elastodynamic Green's Function; 3.3. Wave Modes in all Possible Wave Directions in 3D 3.4. Exact Mathematical Expression for the Green's Function; 4. Numerical Computation of Green's Function; Acknowledgement; References; Chapter 4. Degradation Detection in Composite Structures with Piezoelectric Transducers; 1. Introduction; 2. Adhesive Bond Assessment using EMI Method; 3. Damage Detection using EMI Method; 4. Damage Detection using Elastic Wave Propagation; 5. Assessment of Adhesive Bonds using Elastic Wave Propagation; 6. Summary; Acknowledgments; References; Chapter 5. Design and Development of a Phased Array System for Damage Detection in Structures; 1. Introduction
Series Title: Computational and experimental methods in structures, v. 8.
Responsibility: editors, M H Ferri Aliabadi, Z Sharif Khodaei (Imperial College London, UK).

Abstract:

"Structural health monitoring (SHM) is a relatively new and alternative way of non-destructive inspection (NDI). It is the process of implementing a damage detection and characterization strategy for composite structures. The basis of SHM is the application of permanent fixed sensors on a structure, combined with minimum manual intervention to monitor its structural integrity. These sensors detect changes to the material and/or geometric properties of a structural system, including changes to the boundary conditions and system connectivity, which adversely affect the system's performance. This book's primary focus is on the diagnostics element of SHM, namely damage detection in composite structures. The techniques covered include the use of Piezoelectric transducers for active and passive Ultrasonics guided waves and electromechanical impedance measurements, and fiber optic sensors for strain sensing. It also includes numerical modeling of wave propagation in composite structures. Contributed chapters written by leading researchers in the field describe each of these techniques, making it a key text for researchers and NDI practitioners as well as postgraduate students in a number of specialties including materials, aerospace, mechanical and computational engineering."--

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