All Stories

  1. Load monitoring using a calibrated piezo diaphragm based impedance strain sensor
  2. Crack Monitoring using Fiber optical and Piezo Impedance Sensors
  3. Evaluation of peak-free piezo-impedance and contact sensing using metamaterials
  4. Structural health monitoring technology in Asia
  5. A new breed of metamaterials for health of engineering structures
  6. Damage monitoring using fiber optic sensors and by analysing electro-mechanical admittance signatures obtained from piezo sensor
  7. Fibre optic sensors for load-displacement measurements and comparisons to piezo sensor based electromechanical admittance signatures
  8. Applications of Structural Health Monitoring Technology in Asia
  9. Influence of Loading on the Near Field Based Passive Metamaterial in Structural Health Monitoring
  10. Fatigue Growth Analysis of Pre Induced Surface Defects Using Piezoelectric Wafer Based Impedance Method and Digital Image Correlation System
  11. Fatigue Monitoring of Double Surface Defects Using PZT Based Electromechanical Impedance and Digital Image Correlation Methods
  12. Monitoring of Fatigue in Welded Beams Using Piezoelectric Wafer Based Impedance Technique
  13. Efficiency of electromechanical impedance for load and damage
  14. Electromechanical impedance of piezoelectric transducers for monitoring metallic and non-metallic structures: A review of wired, wireless and energy-harvesting methods
  15. Detecting and Monitoring of Stress on Beams Using Lamb Waves
  16. Durability and Remaining Useful Fatigue Life Assessment of Welded Joint Using Impedance and Wave Propagation Techniques
  17. Structural health monitoring of concrete structures using electromechanical impedance technique
  18. Review on Developments in Fiber Optical Sensors and Applications
  19. Application of three dimensional electromechanical impedance model for damage assessment of plate
  20. Strength and Damage Assessment of Concrete
  21. Sensing Region, Load Monitoring and Practical Issues
  22. Impedance Models for Structural Health Monitoring Using Piezo-Impedance Transducers
  23. Practical implementation of piezo-impedance sensors
  24. Parallel and Individual Interrogations of Piezo-Impedance Transducers for Damage Detection
  25. Piezo impedance sensors to monitor degradation of biological structure
  26. Impedance based sensor technology to monitor stiffness of biological structures
  27. Review on developments in fiber optical sensors and applications
  28. Monitoring concrete by means of embedded sensors and electromechanical impedance technique
  29. Application of Electromechanical Impedance Technique for Engineering Structures: Review and Future Issues
  30. Wireless sensing using piezo-ceramic transducers for structural health monitoring
  31. Experimental study on sensing capability of fibre optic and piezoceramic sensors for load monitoring
  32. Easy installation method of piezoceramic (PZT) transducers for health monitoring of structures using electro-mechanical impedance technique
  33. Health monitoring of concrete structures using embedded PZT transducers based electromechanical impedance model
  34. Active and passive interaction mechanism of smart materials for health monitoring of engineering structures: a review
  35. Different types of piezoceramic-structure interaction models using electro mechanical impedance technique: a review
  36. Influence of the excitation frequency in the electromechanical impedance method for SHM applications
  37. Monitoring damage propagation using PZT impedance transducers
  38. Current developments in fiber Bragg grating sensors and their applications
  39. Monitoring damage propagation using PZT impedance transducers
  40. Application of Multiplexed FBG and PZT Impedance Sensors for Health Monitoring of Rocks
  41. Three-Dimensional Electromechanical Impedance Model for Multiple Piezoceramic Transducers—Structure Interaction
  42. Influence of loading on the electromechanical admittance of piezoceramic transducers
  43. Uniplexing and Multiplexing of PZT Transducers for Structural Health Monitoring
  44. An electromechanical impedance model of a piezoceramic transducer-structure in the presence of thick adhesive bonding
  45. Three-Dimensional Electromechanical Impedance Model. I: Formulation of Directional Sum Impedance
  46. Three-Dimensional Electromechanical Impedance Model. II: Damage Analysis and PZT Characterization
  47. Influence of loading on structures actuated with piezoceramic transducers
  48. Multiple piezoceramic transducers (PZT)-structure interaction model
  49. Embedded piezoelectric ceramic transducers in sandwiched beams