A novel 1-3-2 piezoelectric composite has been developed,which consists of piezoelectric ceramic plate and 1-3 piezoelectric composite.The composite was fabricated by dicing PZT ceramic along mutual perpendicular two ...A novel 1-3-2 piezoelectric composite has been developed,which consists of piezoelectric ceramic plate and 1-3 piezoelectric composite.The composite was fabricated by dicing PZT ceramic along mutual perpendicular two directions and then filling epoxy into grooves.The piezoelectric and electromechanical properties of the novel composite were determined. The results show a coefficient d_ (33) of 405pC/N,a vibration displacement of 113.5pm,an acoustic impendence of 13.3 Mraly, a bandwidth of 12kHz and a thickness electromechanical coupling coefficient of 0.56.展开更多
Piezoelectric properties and related figures of merit are studied in novel 1-3-type composites based on ferroelectric domain-engineered lead-free single crystal with the relatively large longitudinal piezoelectric coe...Piezoelectric properties and related figures of merit are studied in novel 1-3-type composites based on ferroelectric domain-engineered lead-free single crystal with the relatively large longitudinal piezoelectric coefficient d_(33).Relationships between the piezoelectric properties and the set of figures of merit are analyzed for the 1-3 and 1-3-0 composites that contain the same single-crystal and polymer components.For a composite characterized by 1-3-0 connectivity,an influence of a porous piezo-passive matrix on the figures of merit and their volume-fraction behavior is considered additionally.A large anisotropy of figures of merit is observed in the 1-3-0 composite with specific porous matrices.A diagram is put forward to show volume-fraction regions of the large anisotropy of figures of merit of the studied 1-3-0 composite.Due to large figures of merit and their considerable anisotropy,the studied lead-free composites can be applied in piezoelectric energy-harvesting systems,sensors,transducers,and so on.展开更多
基金supported by the Beijing Natural Science Foundation of China(No.KZ200410772016)Academic Innovative Team Program of University in Beijing.
文摘A novel 1-3-2 piezoelectric composite has been developed,which consists of piezoelectric ceramic plate and 1-3 piezoelectric composite.The composite was fabricated by dicing PZT ceramic along mutual perpendicular two directions and then filling epoxy into grooves.The piezoelectric and electromechanical properties of the novel composite were determined. The results show a coefficient d_ (33) of 405pC/N,a vibration displacement of 113.5pm,an acoustic impendence of 13.3 Mraly, a bandwidth of 12kHz and a thickness electromechanical coupling coefficient of 0.56.
基金The authors are grateful to Prof.Dr.I.A.Parinov and Prof.Dr.A.E.Panich(Southern Federal University,Russia),and Prof.Dr.C.R.Bowen(University of Bath,UK)for their interest in the field of modern piezo-active materials and applications.Research was financially supported by Southern Federal University,grant No.VnGr-07/2020-04-IM(Ministry of Science and Higher Education of the Russian Federation).
文摘Piezoelectric properties and related figures of merit are studied in novel 1-3-type composites based on ferroelectric domain-engineered lead-free single crystal with the relatively large longitudinal piezoelectric coefficient d_(33).Relationships between the piezoelectric properties and the set of figures of merit are analyzed for the 1-3 and 1-3-0 composites that contain the same single-crystal and polymer components.For a composite characterized by 1-3-0 connectivity,an influence of a porous piezo-passive matrix on the figures of merit and their volume-fraction behavior is considered additionally.A large anisotropy of figures of merit is observed in the 1-3-0 composite with specific porous matrices.A diagram is put forward to show volume-fraction regions of the large anisotropy of figures of merit of the studied 1-3-0 composite.Due to large figures of merit and their considerable anisotropy,the studied lead-free composites can be applied in piezoelectric energy-harvesting systems,sensors,transducers,and so on.