Structural health monitoring (shm) in aerospace structures / edited by Fuh-Gwo Yuan.
| Other author | Yuan, Fuh-Gwo. |
| Format | Electronic |
| Publication Info | Duxford, UK : Woodhead Publishing is an imprint of Elsevier, 2016. |
| Description | xviii, 495 pages : illustratiions, maps ; 23 cm |
| Supplemental Content | Full text available from eBook - Engineering 2016 [EBCE16] |
| Subjects |
| Series | Woodhead Publishing series in composities science and engineering; number 68 Woodhead Publishing series in composities science and engineering; number 68. UNAUTHORIZED |
| Contents | Part 1. Part 1. SHM technologies for damage detection, diagnosis and prognosis in aerospace structures : application and efficient use. Chapter 1. Integrated vehicle health management in aerospace structures / R. W. Ross. 1.1. Introduction ; 1.2. Structural health monitoring and nondestructive inspection ; 1.3. Integrated vehicle health management or safety assurance ; 1.4. Probabilistic health assessment and prognostic methods ; 1.5. Modeling and simulation-based systems engineering for mission success ; 1.6. Summary ; References ; Chapter 2. A novel approach for implementing structural health monitoring systems for aerospace structures / M. M. Derriso, C. D. McCurry and C. M. Schubert Kabban. 2.1. Introduction ; 2.2. Structural health monitoring ; 2.3. Cognitive architecture for state exploitation ; 2.4. SHM laboratory experiment ; 2.5. ASIP application to the SHM laboratory experiment ; 2.6. CASE application to the SHM laboratory experiment ; 2.7. ASIP and CASE comparison ; 2.8. Validation of SHM systems ; 2.9. Conclusions ; References -- Part 2. Smart materials for SHM in aerospace structures. Chapter 3. Piezoelectric materials for cryogenic and high-temperature applications / S. J. Zhang, F. Li and F. P. Yu. 3.1. Introduction ; 3.2. Development of piezoelectric materials for SHM applications ; 3.3. Requirements of piezoelectric materials in harsh environments ; 3.4. Temperature dependence of electromechanical properties ; 3.5. Uniqueness of relaxor - PT ferroelectric crystals ; 3.6. Summary ; 3.7. Future research ; References ; Chapter 4. Using optical fibers for ultrasonic damage detection in aerospace structures / Y. Okabe and Q. Wu. 4.1. Introduction ; 4.2. Optical fiber ultrasonic sensors ; 4.3. Damage detection in composites with OFUs ; 4.4. Applications to complex-shaped aerospace structures ; 4.5. Conclusion ; References ; Chapter 5. Flexoelectric effect, materials and structures. 5.1. Introduction of flexoelectricity ; 5.2. Principle of flexoelectricity ; 5.3. Linear flexoelectric materials modeling ; 5.4. Flexoelectricity in solid materials ; 5.5. Other flexoelectric materials ; References ; Chapter 6. Flexoelectric strain gradient sensing / W. Huang, F. -G. Yuan and X. Jiang. 6.1. Introduction ; 6.2. In-plane strain gradient measurement ; 6.3. Out-of-plane strain gradient measurement ; 6.4. Stress intensity factor measurement and crack monitoring with SGS ; 6.5. Summary ; References ; Chapter 7. Energy harvesting using piezoelectric materials in aerospace structures / T. -B. Xu. 7.1. Introduction to piezoelectric energy harvesting (PEH) technology ; 7.2. Critical piezoelecgtric material properties for energy harvesting ; 7.3. PEH device concepts and their performance ; 7.4. Electrical energy transportation ; 7.5. PEH characterization methods ; 7.6. Piezoelectric energy harvesting applications in aerospace ; 7.7. Summary ; References ; Chapter 8. Magnetic levitation and its application for low frequency vibration energy harvesting / S. Palagummi and F. -G. Yuan. 8.1. Introduction ; 8.2. Magnetism ; 8.3. Magnetic levitation ; 8.4. Vertical and horizontal diamagnetic levitation systems for vibration energy harvesting ; 8.5. Conclusions ; References -- Part 3. Innovative SHM technologies for damage diagnosis in aerospace structures. Chapter 9. Sparse array imaging with guided waves under variable environmental conditions / J. E. Michaels. 9.1. Introduction ; 9.2. Background and methodologies ; 9.3. Case studies ; 9.4. Discussion ; 9.5. Conclusions and recommendations ; Acknowledgements ; References ; Chapter 20. Phased array techniques for damaging detection in aerospace structures / L. Yu and Z. Tian. 10.1. Introduction ; 10.2. Phased array beamforming theory ; 10.3. Array configuration and characterization ; 10.4. Applications in space SHM ; 10.5. Conclusions ; References ; Chapter 11. Defect detection, classification, and characterization using ultrasound / J. Zhang. 11.1. Introduction ; 11.2. Modeling ; 11.3. Defect detection using ultrasound ; 11.4. Defect classification and characterization ; 11.5. Summary ; References ; Chapter 12. Non-contact laser ultrasonics for SHM in aerospace structures / H. Sohn and P. Liu. 12.1. Introduction to noncontract laser ultrasonics ; 12.2. Basic working principle for laser ultrasonics ; 12.3. System realization for noncontract laser ultrasonic measurement ; 12.4. Applications to aerospace structures ; 12.5. Conclusions ; References ; Chapter 13. Nonlinear ultrasonics for health monitoring of aerospace structures using active sparse sensor networks / Z. Su and M. Hong. 13.1. Introduction ; 13.2. Features of GUW in aerospace structures ; 13.3. Signal processing and interpretation ; 13.4. Implementation ; 13.5. Case studies ; 13.6. Conclusions ; Acknowledgements ; References ; Chapter 14. Space wavenumber and time-frequency analysis for vibration and wave-based damage diagnosis / P. F. Pai. 14.1. Introduction ; 14.2. Space wavenumber analysis ; 14.3. Time - frequency analysis ; 14.4. Numerical and experimental validations ; 14.5. Concluding remarks ; Acknowledgements ; References -- Part 4. Innovative SHM technologies for damage prognosis in aerospace structures. Chapter 15. Fatigue damage diagnosis and prognosis using electromechanical impedance technique / C. -K. Soh and Y. Y. Lim. 15.1. Introduction ; 15.2. Electromechanical impedance technique and fatigue crack monitoring ; 15.3. Fatigue crack growth ; 15.4. Experimental study ; 15.5. Conclusions ; References ; Chapter 16. An energy-based prognostic framework to predict evolution of damage in composite materials / M. Chiachío, A. Saxena and K. Goebel. 16.1. Introduction ; 16.2. Fundamentals ; 16.3. Damage prognostics in composite materials ; 16.4. Prognostics example ; 16.5. Concluding remarks ; References ; Appendix : nomenclature and basic relations ; Index. |
| General note | Includes index. |
| Access restriction | Available only to authorized users. |
| Technical details | Mode of access: World Wide Web |
| Genre/form | Electronic books. |
| LCCN | 2016439891 |
| ISBN | 9780081001486 print |
| ISBN | 0081001487 print |
| ISBN | electronic bk. |
Availability
| Library | Location | Call Number | Status | Item Actions |
|---|---|---|---|---|
| Electronic Resources | Access Content Online | ✔ Available |