During poling and application in actuators, piezoelectric ceramics like lead-zirconate-titanate are exposed to static or cyclically varying electric fields, often leading to pronounced changes in the electromechanical properties. These fatigue phenomena depend on time, peak electric load, and temperature. Although this process impacts the performance of many actuator materials, its physical understanding remains elusive. This paper proposes a set of key experiments to systematically investigate the changes in the ferroelectric hysteresis, field-dependent relative permittivity, and piezoelectric coefficient after submitting the material to dc loads of varying amplitude and duration. The observed effects are explained based on a model of doma...
Piezoelectric ceramics materials are extensively used in many electro mechanical systems as sensing ...
The influence of polarization fatigue on domain patterns of commercial lead zirconate titanate ceram...
The evolution of the domain structure in lead zirconate titanate ceramics in the course of polarizat...
During poling and application in actuators, piezoelectric ceramics like lead-zirconate-titanate are ...
Mobility of ferroelectric domain walls is a critical factor in the fatigue of piezoelectric ceramics...
In actuator applications, a degradation of the ferroelectric material occurs both under unipolar cyc...
Fatigue in ferroelectric ceramics is the gradual change of material properties with cyclic loading. ...
Piezoelectric actuators generally are driven with unipolar electric load cycles. Although the obtain...
Ferroelectric and ferroelastic properties are closely entwined in piezoelectric perovskites. Researc...
The frequency effect on the electrical fatigue behaviour of lead zirconate titanate (PZT) ceramics f...
Fatigue behaviors of Lead Zirconate Titanate (PZT) ceramics under different amplitude of bipolar ele...
Hysteresis loops of the piezoelectric coefficient, d33 = f(E3), are measured on virgin and fatigued ...
In this paper, the electromechanical behavior of lead zirconate-titanate ceramics (P51) has been cha...
It is shown that at weak alternating stress the relationship between the piezoelectrically induced c...
The temperature- and field-dependent degradation properties of bulk Pb(Zr,Ti)O3 material (PZT) under...
Piezoelectric ceramics materials are extensively used in many electro mechanical systems as sensing ...
The influence of polarization fatigue on domain patterns of commercial lead zirconate titanate ceram...
The evolution of the domain structure in lead zirconate titanate ceramics in the course of polarizat...
During poling and application in actuators, piezoelectric ceramics like lead-zirconate-titanate are ...
Mobility of ferroelectric domain walls is a critical factor in the fatigue of piezoelectric ceramics...
In actuator applications, a degradation of the ferroelectric material occurs both under unipolar cyc...
Fatigue in ferroelectric ceramics is the gradual change of material properties with cyclic loading. ...
Piezoelectric actuators generally are driven with unipolar electric load cycles. Although the obtain...
Ferroelectric and ferroelastic properties are closely entwined in piezoelectric perovskites. Researc...
The frequency effect on the electrical fatigue behaviour of lead zirconate titanate (PZT) ceramics f...
Fatigue behaviors of Lead Zirconate Titanate (PZT) ceramics under different amplitude of bipolar ele...
Hysteresis loops of the piezoelectric coefficient, d33 = f(E3), are measured on virgin and fatigued ...
In this paper, the electromechanical behavior of lead zirconate-titanate ceramics (P51) has been cha...
It is shown that at weak alternating stress the relationship between the piezoelectrically induced c...
The temperature- and field-dependent degradation properties of bulk Pb(Zr,Ti)O3 material (PZT) under...
Piezoelectric ceramics materials are extensively used in many electro mechanical systems as sensing ...
The influence of polarization fatigue on domain patterns of commercial lead zirconate titanate ceram...
The evolution of the domain structure in lead zirconate titanate ceramics in the course of polarizat...