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Effects of Electric Field Repeated Treatment on the Properties of Electrorheological Fluids Based on Barium Titanyl Oxalate nanoparticles

机译:电场反复处理对基于草酸钡纳米粒子的电气流变液性能的影响

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The electrorheological (ER) fluid based on BaTiO(C2O4)2 nanocoparticles, which are prepared by the oxalate precipitation method, is fabricated using methyl silicon oil as dispersing medium. The structure and properties of the BaTiO(C2O4)2 nanoparticles and their based ER fluid are investigated before and after the ER fluid being treated by electric field. The results show that the ER fluid based on BaTiO(C2O4)2 nanocoparticles exhibits distinct ER effect and poor repetition. After repeated treated 10 times by linear electric field strength from 0 to 4kV/mm, the electric field-induced shear stress, current density and dielectric constant of the ER fluid decrease while its repetition significantly improve. It can be explained by the TEM images of ER Fluid before and after treatment. It is suggest that some irreversible interaction among the BaTiO(C2O4)2 nanoparticles has been occurred during the initial electric field treatment.
机译:基于BATIO(C2O4)2纳米粒子的电流(ER)流体通过草酸盐沉淀法制制备,使用甲基硅油作为分散介质制造。在通过电场处理的ER流体之前和之后研究了BATIO(C2O4)2纳米颗粒及其基于ER流体的结构和性质。结果表明,基于BATIO(C2O4)2纳米粒子的ER流体表现出不同的ER效应和差的重复。通过线性电场强度从0到4kV / mm重复处理10次后,电场诱导的剪切应力,电流密度和ER流体的介电常数在其重复显着改善时降低。它可以通过治疗前后的ER流体的TEM图像来解释。据表明,在初始电场处理期间已经发生了BATIO(C2O4)2纳米颗粒之间的一些不可逆相互作用。

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