材料科学
弹性体
介电弹性体
复合材料
电介质
硅酮
交叉连接
模数
聚合物
介电损耗
陶瓷
执行机构
延伸率
介电常数
硅橡胶
极限抗拉强度
光电子学
电气工程
工程类
作者
Quan‐Ping Zhang,Junhua Liu,Haidong Liu,Fei Jia,Yuanlin Zhou,Jian Zheng
摘要
Adding ceramic or conductive fillers into polymers for increasing permittivity is a direct and effective approach to enhance the actuation strain of dielectric elastomer actuators (DEAs). Unfortunately, the major dielectric loss caused by weak interfaces potentially harms the electro-mechanical stability and lifetime of DEAs. Here, we construct a desired macromolecular network with a long chain length and low cross-link density to reduce the elastic modulus of silicone elastomers. Selecting a high molecular weight of polymethylvinylsiloxane and a low dose of the cross-linker leads the soft but tough networks with rich entanglements, poor cross-links, and a low amount of defects. Then, a ductile material with low elastic modulus but high elongation at break is obtained. It accounts for much more excellent actuation strain of Hl in comparison to that of the other silicone elastomers. Importantly, without other fillers, the ultralow dielectric loss, conductivity, and firm networks possibly promote the electro-mechanical stability and lifetime for the DEA application.
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