[1] ZOU K,YUE Q,LI J,et al. High-performance ultrasonic transducer based on PZT piezoelectric ceramic for high-temperature NDE[J]. Ultrasonics, 2023,132:107013.
[2] KIM K B,HSU D K,AHN B,et al. Fabrication and comparison of PMN-PT single crystal, PZT and PZT-based 1-3 composite ultrasonic transducers for NDE applications[J]. Ultrasonics,2010,50(8):790-797.
[3] GUO S,CHEN S,ZHANG L,et al. Direct-write piezoelectric ultrasonic transducers for pipe structural health monitoring[J]. NDT & E International,2019,107:102131.
[4] MIAO H,LI F. Shear horizontal wave transducers for structural health monitoring and nondestructive testing: A review[J]. Ultrasonics,2021,114:106335.
[5] ZHONG C H,CROXFORD A J,WILCOX P D. Investigation of inductively coupled ultrasonic transducer system for NDE[J]. IEEE Transactions on Ultrasonics Ferroelectrics & Frequency Control,2013,60(6):1115-1125.
[6] BAKARIC M,FROMME P,HURRELL A,et al. Measurement of the temperature-dependent output of lead zirconate titanate transducers[J]. Ultrasonics,2021,114(5):106378.
[7] ZHENG Y,LIU K,WU Z,et al. Lamb waves and electro-mechanical impedance based damage detection using a mobile PZT transducer set[J]. Ultrasonics,2019,92:13-20.
[10] SABAT R G,MUKHERJEE B K,REN W,et al. Temperature dependence of the complete material coefficients matrix of soft and hard doped piezoelectric lead zirconate titanate ceramics[J]. Journal of Applied Physics,2007,101(6):121-126.
[11] ISLAM M S,BEAMISH J. Shear piezoelectric and dielectric properties of LiNbO3, PMN-PT and PZT-5A at low temperatures[J]. Journal of Low Temperature Physics,2019,194(3/4):285-301.
[12] ISLAM M S,BEAMISH J. Piezoelectric creep in LiNbO3, PMN-PT and PZT-5A at low temperatures[J]. Journal of Applied Physics,2019,126(20):204101.
[13] BUKHARI S,ISLAM M D,HAZIOT A,et al. Shear piezoelectric coefficients of PZT, LiNbO3 and PMN-PT at cryogenic temperatures[J]. Journal of Physics:Conference Series,2014,568(3):032004.