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Statistical Algorithm for Damage Detection of Concrete Beams Based on Piezoelectric Smart Aggregate

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【作者】 蒙彦宇阎石

【Author】 MENG Yanyu1,2,3,YAN Shi 1,3(1.Faculty of Infrastructure Engineering,Dalian University of Technology,Dalian 116024,China;2.College of Transportation and Civil Engineering,Beihua University,Jilin 132013,China;3.School of Civil Engineering,Shenyang Jianzhu University,Shenyang 110168,China)

【机构】 Faculty of Infrastructure Engineering,Dalian University of TechnologyCollege of Transportation and Civil Engineering,Beihua UniversitySchool of Civil Engineering,Shenyang Jianzhu University

【摘要】 The functional piezoelectric ceramic smart aggregate(SA) sensors and actuators,based on piezoelectric ceramic materials such as lead zirconium titanate(PZT),were embedded into the reinforced concrete beams with three-point bending under static loading for purposes of damage detection.The SA actuators generated the desired sine sweep excitation signals online and the SA sensors received and detected real-time signals before and after damage.The wavelet analysis and statistical characteristics about damage signals were used as a signal processing and analysis tool to extract the optimal damage information and establish a statistical damage detection algorithm.The damage index-based wavelet analysis and damage probability-based probability and statistics were proposed by PZT wavebased theory and active health monitoring technology.The results showed that the existence of cracks inside largely attenuated the amplitude of active monitoring signal after the damage of beam and the attenuation was related to the severity degree of damage.The innovative statistical algorithm of damage pattern detection based PZT-SA can effectively determine damage probability and damage degree,and provide a prediction for the critical damage location of reinforced concrete structures.The developed method can be utilized for the structural health comprehensive monitoring and damage detection on line of various large-scale concrete structures.

【Abstract】 The functional piezoelectric ceramic smart aggregate(SA) sensors and actuators,based on piezoelectric ceramic materials such as lead zirconium titanate(PZT),were embedded into the reinforced concrete beams with three-point bending under static loading for purposes of damage detection.The SA actuators generated the desired sine sweep excitation signals online and the SA sensors received and detected real-time signals before and after damage.The wavelet analysis and statistical characteristics about damage signals were used as a signal processing and analysis tool to extract the optimal damage information and establish a statistical damage detection algorithm.The damage index-based wavelet analysis and damage probability-based probability and statistics were proposed by PZT wavebased theory and active health monitoring technology.The results showed that the existence of cracks inside largely attenuated the amplitude of active monitoring signal after the damage of beam and the attenuation was related to the severity degree of damage.The innovative statistical algorithm of damage pattern detection based PZT-SA can effectively determine damage probability and damage degree,and provide a prediction for the critical damage location of reinforced concrete structures.The developed method can be utilized for the structural health comprehensive monitoring and damage detection on line of various large-scale concrete structures.

【基金】 Supported by Science and Technology Project of Ministry of Housing and Urban-Rural Development(No.2011k211);"11th Five-Year" Science and Technology Research Project of Education Department,Jilin Province(No.200925);Liaoning Structure Engineering Key Laboratory 2009 Open Fund(JG2009 2007-08)
  • 【文献出处】 Transactions of Tianjin University ,天津大学学报(英文版) , 编辑部邮箱 ,2012年06期
  • 【分类号】TU375.1
  • 【被引频次】5
  • 【下载频次】67
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