1-3-Type piezoelectric composites with three-layer cascade structure
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[1] L. Qin,et al. Flexible 1-3 Piezoelectric Composites with Soft Embedded Conductive Interconnects for Underwater Acoustic Transducers , 2023, ACS Applied Electronic Materials.
[2] Sheng Xu,et al. A wearable cardiac ultrasound imager , 2023, Nature.
[3] L. Qin,et al. Study on Suppression of Transverse Mechanical Coupling of Rectangular Double-Laminated Bending Vibration Elements , 2022, Crystals.
[4] Hua-bei Jiang,et al. Thin ceramic PZT dual- and multi-frequency pMUT arrays for photoacoustic imaging , 2022, Microsystems & Nanoengineering.
[5] Yehui Zhang,et al. Effect of thickness on the performance parameters of modified 1–3 piezoelectric composites , 2022, Ceramics International.
[6] Da Huo,et al. Enhanced electromechanical properties in Pb(Mg1/3Nb2/3)O3–PbTiO3 based 1–3 piezoelectric composites using the alternating current poling method , 2022, Materials Science and Engineering: B.
[7] Sizhe Wang,et al. Lead zirconate titanate aerogel piezoelectric composite designed with a biomimetic shell structure for underwater acoustic transducers. , 2021, Chemical communications.
[8] Shuyu Lin,et al. Study on the bending vibration of bimorph rectangular transducer based on type 2-2 piezoelectric composites. , 2021, Ultrasonics.
[9] M. Ray,et al. Dynamic modelling and analysis of smart carbon nanotube-based hybrid composite beams: Analytical and finite element study , 2021, Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications.
[10] Likun Wang,et al. Design and Properties Analysis of Novel Modified 1-3 Piezoelectric Composite , 2021, Materials.
[11] Cheng Fang,et al. A Focused Optically Transparent PVDF Transducer for Photoacoustic Microscopy , 2020, IEEE Sensors Journal.
[12] Likun Wang,et al. Characterization of 1-3 Piezoelectric Composite with a 3-Tier Polymer Structure , 2020, Materials.
[13] L. Qin,et al. Equivalent parameter model of 1-3 piezocomposite with a sandwich polymer , 2018, Results in Physics.
[14] L. Qin,et al. Characterization of an Improved 1-3 Piezoelectric Composite by Simulation and Experiment , 2017, Journal of applied biomaterials & functional materials.
[15] L. Qin,et al. Electromechanical coupling coefficient and acoustic impedance of 1-1-3 piezoelectric composites , 2017 .
[16] J. Vasseur,et al. Tunable phononic crystals based on piezoelectric composites with 1-3 connectivity. , 2016, The Journal of the Acoustical Society of America.
[17] Yan Lu,et al. Design and Fabrication of Air-Based 1-3 Piezoelectric Composite Transducer for Air-Coupled Ultrasonic Applications , 2016, J. Sensors.
[18] Shi-feng Huang,et al. Design and properties of Gaussian-type 1–3 piezoelectric composites , 2016 .
[19] S. Meguid,et al. Effect of carbon nanotube waviness on active damping of laminated hybrid composite shells , 2015 .
[20] M. Ray,et al. Smart damping of laminated fuzzy fiber reinforced composite shells using 1–3 piezoelectric composites , 2013 .
[21] Xin Cheng,et al. Performance investigation of 1-3 piezoelectric ceramic–cement composite , 2010 .
[22] A. V. Turik,et al. A Large Piezoelectric Anisotropy of a Three-Component Composite with Variable Connectivity , 1999 .
[23] V. Topolov,et al. Modified layered composite with high anisotropy of the piezoconstants eij* and dij* , 1998 .
[24] W. A. Smith,et al. Modeling 1-3 composite piezoelectrics: hydrostatic response , 1993, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[25] J. Unsworth,et al. Simple model for piezoelectric ceramic/polymer 1-3 composites used in ultrasonic transducer applications , 1989, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[26] J. V. Biggers,et al. Composites of PZT and Epoxy for Hydrostatic Transducer Applications , 1981 .