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Enhanced actuated strain of titanium dioxideitrile-butadiene rubber composite by the biomimetic method

机译:仿生法提高二氧化钛/丁腈橡胶复合材料的致动应变

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In order to improve compatibility between the dielectric filler and polymeric matrix, we used bio-inspired polydopamine (PDA) to modify titanium dioxide (TiO2) nano-particles. The PDA coated TiO2 (TiO2-PDA) nano-particles were incorporated into nitrile-butadiene rubber (NBR) which contains a large amount polar groups to obtain a dielectric elastomer composite with a large actuated strain under a low electric field. The relatively soft insulating PDA layer on the TiO2 nano-particles led to the composites filled with TiO2-PDA nano-particles displaying better filler dispersion, much lower elastic modulus, lower dielectric loss, and higher electric breakdown field compared with the composites filled with pristine TiO2 nanoparticles, resulting in a high electromechanical sensitivity (a). At last, an actuated strain of 5.2% at a relatively safe electric field of 12.5 kV mm(-1) without any pre-strains was obtained by the 10 phr TiO(2)PDA/NBR composite, a 140% increase in actuated strain compared with the actuated strain (0.69%) of pure NBR at 20 kV mm(-1) without any pre-strains. This biomimetic method is simple, efficient, nontoxic, and easy to control, which can be used in other dielectric fillers to improve electromechanical properties of dielectric elastomers.
机译:为了提高介电填料和聚合物基体之间的相容性,我们使用了生物启发的聚多巴胺(PDA)来修饰二氧化钛(TiO2)纳米颗粒。将PDA涂覆的TiO 2(TiO 2 -PDA)纳米颗粒掺入含有大量极性基团的丁腈橡胶(NBR)中,以在低电场下获得具有大的驱动应变的介电弹性体复合材料。 TiO2纳米颗粒上相对较软的绝缘PDA层导致与TiO2-PDA纳米颗粒填充的复合材料相比,原始填充的复合材料具有更好的填料分散性,更低的弹性模量,更低的介电损耗和更高的击穿电场TiO2纳米颗粒,因此具有很高的机电灵敏度(a)。最后,通过10 phr TiO(2)PDA / NBR复合材料,在没有任何预应变的情况下在12.5 kV mm(-1)的相对安全的电场下获得了5.2%的激励应变,激励应变增加了140%与纯NBR在20 kV mm(-1)时没有任何预应变的致动应变(0.69%)相比。该仿生方法简单,有效,无毒且易于控制,可用于其他介电填料中以改善介电弹性体的机电性能。

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