TY - JOUR
T1 - A High-Sensitivity, Broadband (1A,1B)-3 Single-Crystal Composite Ultrasonic Transducer
AU - Lei, Yu
AU - Gao, Ziyan
AU - Gan, Guohong
AU - Bai, Wei
AU - Wei, Yang
AU - Wang, Bing
AU - Yuan, Xiaoting
AU - Hou, Zewei
AU - Hong, Jiawang
AU - Dong, Shuxiang
N1 - Publisher Copyright:
© 2025 Wiley-VCH GmbH.
PY - 2025/3/11
Y1 - 2025/3/11
N2 - Piezocomposite ultrasonic transducers (PUTs) are extensively used in diverse technological fields, however, PUTs based on conventional 1–3 piezocomposite containing only one type of piezo pillars have met a bottleneck in further performance enhancement. Herein, based on the [011]-oriented relaxor ferroelectric Pb(In1/3Nb2/3)O3-Pb(Mg1/3Nb2/3)O3-PbTiO3 (PIN-PMN-PT) crystal, a novel (1A,1B)-3 piezocomposite structure containing two types of single-crystal pillars- high d33, kt pillars with square cross-section (termed as 1A) and high dhgh pillars with rectangular cross-section (termed as 1B), alternately arranging in epoxy resin and forming a 5 × 9 array are reported. The combination effect and synergistic action of two different piezo-pillars in the piezocomposite notably broaden the working bandwidth, improve the sound sensitivity, and also produce a suppression effect to undesirable transverse vibration modes. Experimental results validate the performance enhancements of (1A,1B)-3 composite-based PUT: the increases in –3 dB transmitting, receiving bandwidth, and receiving sensitivity are 71.4%, 28.6%, and 26.6%, respectively, in comparison to conventional 13 single-crystal composite-based PUT. Moreover, its hydrostatic figure of merit (HFOM) dhgh (=4084.9 × 10−15 m2 N−1) is 177.3% higher than that of commercial single crystal 13 piezocomposites. The proposed design strategy represents a promising development direction of next-generation bandwidth and high-sensitivity ultrasonic transducers.
AB - Piezocomposite ultrasonic transducers (PUTs) are extensively used in diverse technological fields, however, PUTs based on conventional 1–3 piezocomposite containing only one type of piezo pillars have met a bottleneck in further performance enhancement. Herein, based on the [011]-oriented relaxor ferroelectric Pb(In1/3Nb2/3)O3-Pb(Mg1/3Nb2/3)O3-PbTiO3 (PIN-PMN-PT) crystal, a novel (1A,1B)-3 piezocomposite structure containing two types of single-crystal pillars- high d33, kt pillars with square cross-section (termed as 1A) and high dhgh pillars with rectangular cross-section (termed as 1B), alternately arranging in epoxy resin and forming a 5 × 9 array are reported. The combination effect and synergistic action of two different piezo-pillars in the piezocomposite notably broaden the working bandwidth, improve the sound sensitivity, and also produce a suppression effect to undesirable transverse vibration modes. Experimental results validate the performance enhancements of (1A,1B)-3 composite-based PUT: the increases in –3 dB transmitting, receiving bandwidth, and receiving sensitivity are 71.4%, 28.6%, and 26.6%, respectively, in comparison to conventional 13 single-crystal composite-based PUT. Moreover, its hydrostatic figure of merit (HFOM) dhgh (=4084.9 × 10−15 m2 N−1) is 177.3% higher than that of commercial single crystal 13 piezocomposites. The proposed design strategy represents a promising development direction of next-generation bandwidth and high-sensitivity ultrasonic transducers.
KW - (1,1)-3 single-crystal piezocomposite
KW - combination effect
KW - high sensitivity and broadband ultrasonic transducer
KW - hydrostatic figure of merit
KW - synergistic action
UR - http://www.scopus.com/inward/record.url?scp=86000435978&partnerID=8YFLogxK
U2 - 10.1002/adfm.202417084
DO - 10.1002/adfm.202417084
M3 - Article
AN - SCOPUS:86000435978
SN - 1616-301X
VL - 35
JO - Advanced Functional Materials
JF - Advanced Functional Materials
IS - 11
M1 - 2417084
ER -