Agafonov Alexander V, Kraev Anton S, Baranchikov Alexander E, Ivanov Vladimir K
Krestov Institute of Solution Chemistry, Russian Academy of Sciences, 153045 Ivanovo, Russia.
Kurnakov Institute of General and Inorganic Chemistry, Russian Academy of Sciences, 119991 Moscow, Russia.
Polymers (Basel). 2020 Sep 18;12(9):2137. doi: 10.3390/polym12092137.
Electrorheological elastomers based on polydimethylsiloxane filled with hydrated titanium dioxide with a particle size of 100-200 nm were obtained by polymerization of the elastomeric matrix, either in the presence, or in the absence, of an external electric field. The viscoelastic and dielectric properties of the obtained elastomers were compared. Analysis of the storage modulus and loss modulus of the filled elastomers made it possible to reveal the influence of the electric field on the Payne effect in electrorheological elastomers. The elastomer vulcanized in the electric field showed high values of electrorheological sensitivity, 250% for storage modulus and 1100% for loss modulus. It was shown, for the first time, that vulcanization of filled elastomers in the electric field leads to a significant decrease in the degree of crosslinking in the elastomer. This effect should be taken into account in the design of electroactive elastomeric materials.
通过在有或没有外部电场的情况下使弹性体基质聚合,获得了基于填充有粒径为100 - 200 nm的水合二氧化钛的聚二甲基硅氧烷的电流变弹性体。比较了所得弹性体的粘弹性和介电性能。对填充弹性体的储能模量和损耗模量的分析使得揭示电场对电流变弹性体中佩恩效应的影响成为可能。在电场中硫化的弹性体表现出高的电流变灵敏度值,储能模量为250%,损耗模量为1100%。首次表明,在电场中填充弹性体的硫化导致弹性体中交联度的显著降低。在电活性弹性体材料的设计中应考虑到这种效应。