[1]
Park S.PZT-based active damage detection techniques for steel bridge components[J].Smart Materials and Structures,2006,15:957―966.
DOI: 10.1088/0964-1726/15/4/009
Google Scholar
[2]
M. McCann, M. C. Forde. Review of NDT methods in the assessment of concrete and masonry structures [J]. NDT&E International, 2001, 34(2): 71-84.
DOI: 10.1016/s0963-8695(00)00032-3
Google Scholar
[3]
F Sun, Z Chaudhry, C Liang, CA Rogers. Truss structure integrity identification using PZT sensor- actuator[J]. J. of Intelligent Material Systems and Structures, 1995,16(2):134-139
DOI: 10.1177/1045389x9500600117
Google Scholar
[4]
Sun FP, Chaudhry Z, Liang C, Rogers CA. Truss structure integrity identification using PZT sensor-ac-tuator[J]. Journal of Intelligent material systems and structures, 1995,(6):134-143
DOI: 10.1177/1045389x9500600117
Google Scholar
[5]
D Peairs, G Park, D Inman. Improving Accessibility of the Impedance-based Structural Health Monitoring Method [J]. Journal of Intelligent Materials Systems and Structures, 2004, 15: 129-139.
DOI: 10.1177/1045389x04039914
Google Scholar
[6]
Giurgiutiu V, Xu B.L. Development of a Field-portable small-Size impedance analyzer for struetural health monitoring using the electromechanical impedance technique[C]. Proceedings of SPIE-The International Soeiety for Optical Engineering, 2004.
DOI: 10.1117/12.541343
Google Scholar
[7]
Yu Xiao-miao, Yuan Wen-ju, Zhang Xiao-fei. Design of fresh milk quality detector based on AD5933 [J].Journal of Chang chun University of Technology ( Natural Science Edition), 2011, 32(2):147-151.
Google Scholar
[8]
Lee Mascareñas. Development of an impedance method based wireless sensor node for monitoring of bolted joint preload[D]. PHD thesis, University of California, San Diego, U.S.A, 2006.
Google Scholar
[9]
Timothy G. S. Overly. Development and Integration of Hardware and Software for Active-sensors in Structural Health Monitoring[D], University of Cincinnati, Cincinnati, U.S.A, 2007.
Google Scholar
[10]
Xiong Xian-feng. Research on Piezoelectric Impedance Technology for Structural Health Monitoring [D], National University of Defense Technology, 2006.
Google Scholar
[11]
Li Bu-yin, Huang Zhao-xiang, Xing Hui, Liu Zhi-jun. Designing and Implementation of Measurement system of Impedance Spectroscopy Analyzer based on AD5933 [J]. Microcomputer Information, 2008, 24: 288-290.
Google Scholar
[12]
Zhang Yu-xiang, Liu Ming-chun. Design of miniature impedance analysis instrument based on AD5933 [J], Electronic Measurement Technology. 2009, 32(11): 76-79.
Google Scholar
[13]
Li Jing, Chen Shi-li, Jin Shi-jiu. Design of Impedance Analyzer Based on AD5933 [J]. Modern Scientific Instruments 2009, (2):28-30.
Google Scholar
[14]
Naidu A.S.K, Soh C.K. Damage severity and Propagation characterization with admittance signatures of Piezo-transducers [J]. Smart Materials and Signatures, 2004, 13: 393-403.
DOI: 10.1088/0964-1726/13/2/018
Google Scholar
[15]
Hou Xu-dong, Zhang Jing, Lv He-sheng. Design of an portable system for impedance measurement based on piezoelectric ceramics dynamic information. [J]. CHINA MEASUREMENT & TEST. 2010, 36(3):19-22.
Google Scholar
[16]
Wu Di. Theoretical and Experimental Studies of PZT Impedance Method in l- Dimensional Beams [D]. Dalian: Dalian University of Technology, 2011.
Google Scholar
[17]
Wen Dong-dong. Development of an EMI Based Device for Online Structural Health Monitoring [D]. Xi'an: Second Artillery Engineering University, 2011.
Google Scholar