TY - JOUR
T1 - Humidity effect on electromechanical breakdown of dielectric elastomers subject to a ramp voltage
AU - Zuo, Yuchen
AU - Huang, Zihuan
AU - Zhang, Junshi
AU - Liu, Lei
AU - Zhu, Jihong
AU - Zhang, Weihong
N1 - Publisher Copyright:
© 2024 IOP Publishing Ltd.
PY - 2024/7
Y1 - 2024/7
N2 - As is known, the external excitations, material parameters, and ambient environment may affect the electromechanical properties of dielectric elastomers (DEs), which directly induce the occurrence of electrical breakdown. In this paper, we experimentally and theoretically studied the effects of voltage ramp rate, ambient humidity, electrode material, and pre-stretch on electromechanical deformation and electrical breakdown of DEs. By coupling the above four factors, the nonlinear constitutive model and electrical breakdown model of the viscoelastic DE are developed, which are shown to be consistent with the experimental observations. Firstly, when the ramp voltages with different rate are loaded to the same value, a larger voltage ramp rate leads to a smaller stretch and a higher electrical breakdown field strength of the elastomer. Besides, as the humidity increases, the electromechanical deformation increases and the electrical breakdown field decreases. In addition, it is found that different electrode materials show diverse sensitivity to the electromechanical deformation and breakdown field. Finally, with the increase of the pre-stretch from 2 to 4, the deformation and breakdown field both show an upward trend.
AB - As is known, the external excitations, material parameters, and ambient environment may affect the electromechanical properties of dielectric elastomers (DEs), which directly induce the occurrence of electrical breakdown. In this paper, we experimentally and theoretically studied the effects of voltage ramp rate, ambient humidity, electrode material, and pre-stretch on electromechanical deformation and electrical breakdown of DEs. By coupling the above four factors, the nonlinear constitutive model and electrical breakdown model of the viscoelastic DE are developed, which are shown to be consistent with the experimental observations. Firstly, when the ramp voltages with different rate are loaded to the same value, a larger voltage ramp rate leads to a smaller stretch and a higher electrical breakdown field strength of the elastomer. Besides, as the humidity increases, the electromechanical deformation increases and the electrical breakdown field decreases. In addition, it is found that different electrode materials show diverse sensitivity to the electromechanical deformation and breakdown field. Finally, with the increase of the pre-stretch from 2 to 4, the deformation and breakdown field both show an upward trend.
KW - dielectric elastomer
KW - electromechanical breakdown
KW - humidity
KW - ramp voltage
UR - http://www.scopus.com/inward/record.url?scp=85196154488&partnerID=8YFLogxK
U2 - 10.1088/1361-665X/ad54ac
DO - 10.1088/1361-665X/ad54ac
M3 - 评论/辩论
AN - SCOPUS:85196154488
SN - 0964-1726
VL - 33
JO - Smart Materials and Structures
JF - Smart Materials and Structures
IS - 7
M1 - 077002
ER -