材料科学
弹性体
介电强度
电介质
执行机构
电气故障
介电弹性体
复合材料
绝缘体(电)
击穿电压
电压
人工肌肉
电气工程
光电子学
工程类
作者
Xuejing Liu,Shuhai Jia,Bo Li,Xing Yu,Hualing Chen,Hui Ma,Junjie Sheng
标识
DOI:10.1109/tdei.2017.006599
摘要
Dielectric elastomer (DE) is capable of large deformation under electrical excitation. However, DE is susceptible to breakdown failure in this electromechanical actuation. Using an analogy of fracture mechanics, we establish an energetic model to estimate the breakdown voltage of DE in actuation. The non-linear characteristics, including material parameters, stretch ratios, and ambient temperature are involved to determine the critical condition of breakdown failure. The model is verified by experimental data of VHB membranes, and then extended to different DE materials. With respect to applications, two types of classic dielectric elastomer actuators (DEAs) are analyzed, and their breakdown voltages are evaluated. This study can provide a path for optimization of DE in electromechanical actuator and insulator applications.
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