Domain wall motion and lattice strain dynamics of ferroelectrics at resonance were simultaneously measured by combining high-power burst excitation and in situ high-energy x-ray diffraction. The increased loss at high vibration velocity was directly related to the increased domain wall motion, driven by dynamic mechanical stress. A general relationship between the microstructural strain contributions and macroscopic electromechanical behavior was established, allowing the prediction of high-power stability of ferroelectric materials. The resultsindicate that the materials’ stability during high-power drive is predominantly related to the basic chemical composition, while the piezoelectric hardening mechanisms mainly influence the small-sign...
Abstract. Current solid state actuators are briefly compared to traditional actuator technologties t...
Single crystals of PbZrO3 and LaAlO3 have been studied by Dynamic Mechanical Analysis measurements i...
In ferroelectric materials, enhanced dielectric and piezoelectric property coefficients are found in...
Domain wall motion and lattice strain dynamics of ferroelectrics at resonance were simultaneously me...
The shear modulus and mechanical loss at low frequencies (0.01, 0.3, 1 Hz) are measured by an invert...
Ferroelectrics are utilized in a myriad of technological applications including vibration damping du...
Ferroelectric materials are the best dielectric and piezoelectric materials known today. Since the d...
The blocking force test is a standard test to characterise the properties of piezoelectric actuators...
Piezoelectric ceramics generate strain through the intrinsic piezoelectric effect, the motion of fer...
The nonlinear electromechanical behavior of ferroelectric materials is governed by the motion of dom...
Ferroelectrics have a spontaneous electrical polarization that is arranged into domains and can be r...
In this thesis, the properties of ferroelectric domains and domain walls in Pb(Zr0.2Ti0.8)O3 are stu...
Abstract: The shear modulus and mechanical loss at low frequencies (0.01,0.3, 1 Hz) are measured by ...
International audienceThe behaviour of a bulk lead zirconate titanate ceramic has been characterised...
Ferroelectric materials find application in numerous electronic devices and are continuously enablin...
Abstract. Current solid state actuators are briefly compared to traditional actuator technologties t...
Single crystals of PbZrO3 and LaAlO3 have been studied by Dynamic Mechanical Analysis measurements i...
In ferroelectric materials, enhanced dielectric and piezoelectric property coefficients are found in...
Domain wall motion and lattice strain dynamics of ferroelectrics at resonance were simultaneously me...
The shear modulus and mechanical loss at low frequencies (0.01, 0.3, 1 Hz) are measured by an invert...
Ferroelectrics are utilized in a myriad of technological applications including vibration damping du...
Ferroelectric materials are the best dielectric and piezoelectric materials known today. Since the d...
The blocking force test is a standard test to characterise the properties of piezoelectric actuators...
Piezoelectric ceramics generate strain through the intrinsic piezoelectric effect, the motion of fer...
The nonlinear electromechanical behavior of ferroelectric materials is governed by the motion of dom...
Ferroelectrics have a spontaneous electrical polarization that is arranged into domains and can be r...
In this thesis, the properties of ferroelectric domains and domain walls in Pb(Zr0.2Ti0.8)O3 are stu...
Abstract: The shear modulus and mechanical loss at low frequencies (0.01,0.3, 1 Hz) are measured by ...
International audienceThe behaviour of a bulk lead zirconate titanate ceramic has been characterised...
Ferroelectric materials find application in numerous electronic devices and are continuously enablin...
Abstract. Current solid state actuators are briefly compared to traditional actuator technologties t...
Single crystals of PbZrO3 and LaAlO3 have been studied by Dynamic Mechanical Analysis measurements i...
In ferroelectric materials, enhanced dielectric and piezoelectric property coefficients are found in...