Improving actuation strain and breakdown strength of natural rubber dielectric elastomers incorporated with AlN with silane grafting

M. Ruan, Bo Li, Dan-Lu Guo, Weixing Nie, Shen Wang, Zhifeng Liu
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Abstract

In this study, dielectric elastomers offering intrinsically good integrated performances are achieved by introducing AlN particles grafted with γ-methacryloxypropyl trimethoxy silane (KH570). The C=C of KH570 participated in the vulcanization of NR, which could increase the dispersions and interfacial interactions. By incorporating 10 phr AlN-KH570 fillers, the dielectric and mechanical properties of the composite are increased compared with the pristine DEA, and the breakdown strength remains above 93.9 kV/mm. Correspondingly, the actuation strain of 10 phr AlN-KH570/NR composite is 7 times higher than that of pristine DEA under the same driving voltage. Consequently, the AlN particles developed here are promising candidates as dielectric in actuators, and their excellent electromechanical properties could be applied in future industrial applications of DEs.
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硅烷接枝AlN提高天然橡胶介电弹性体的致动应变和击穿强度
在本研究中,通过引入γ-甲基丙烯氧基三甲氧基硅烷(KH570)接枝的AlN颗粒,获得了具有内在良好集成性能的介电弹性体。KH570的C=C参与了NR的硫化,增加了分散性和界面相互作用。添加10 phr AlN-KH570填料后,复合材料的介电性能和力学性能均较原始DEA有所提高,击穿强度保持在93.9 kV/mm以上。相应的,在相同的驱动电压下,10 phr AlN-KH570/NR复合材料的驱动应变是原始DEA的7倍。因此,在这里开发的AlN粒子是很有希望作为执行器中的介电材料的候选者,它们优异的机电性能可以在未来的工业应用中得到应用。
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