4.6 Article

Smart Elasto-Magneto-Electric (EME) Sensors for Stress Monitoring of Steel Cables: Design Theory and Experimental Validation

Journal

SENSORS
Volume 14, Issue 8, Pages 13644-13660

Publisher

MDPI
DOI: 10.3390/s140813644

Keywords

elasto-magnetic (EM); magneto-electric (ME); elasto-magneto-electric (EME) sensor; steel cable; stress monitoring

Funding

  1. Chinese Mainland, Taiwan and Macao Universities of The Hong Kong Polytechnic University [G-UA34]
  2. Hong Kong Polytechnic University [1-ZV7P]
  3. National Natural Science Foundation of China [90915008, 50908202, 51178426]
  4. Zhejiang Provincial Natural Science Foundation of China [LR13E080001]
  5. national key technology RAMP
  6. D program of China [2012BAJ07B03]
  7. Hong Kong, Macao and Taiwan Science AMP
  8. Technology Cooperation Program of China [2012DFH70130]
  9. Key Science and Technology Innovation Team Program of Zhejiang Province, China [2010R10034]
  10. Cross-disciplinary Research Seed Funds for Young Teachers in Zhejiang University [2011022]

Ask authors/readers for more resources

An elasto-magnetic (EM) and magneto-electric (ME) effect based elasto-magneto-electric (EME) sensor has been proposed recently by the authors for stress monitoring of steel cables with obvious superiorities over traditional elasto-magnetic sensors. For design optimization and engineering application of the EME sensor, the design theory is interpreted with a developed model taking into account the EM coupling effect and ME coupling effect. This model is able to approximate the magnetization changes that a steel structural component undergoes when subjected to excitation magnetic field and external stress, and to simulate the induced ME voltages of the ME sensing unit located in the magnetization area. A full-scale experiment is then carried out to verify the model and to calibrate the EME sensor as a non-destructive evaluation (NDE) tool to monitor the cable stress. The experimental results agree well with the simulation results using the developed model. The proposed EME sensor proves to be feasible for stress monitoring of steel cables with high sensitivity, fast response, and ease of installation.

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