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Electrorheological performance of multigram-scale mesoporous silica particles with different aspect ratios

机译:纵横比不同的数克级介孔二氧化硅颗粒的电流变性能

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摘要

Mesoporous silica (mSiO(2)) particle-based electrorheological (ER) fluids were examined to determine the effect of the particles' aspect ratio on ER performance. Multigram-scale mSiO(2) particles were fabricated with different aspect ratios using the sol-gel method. The ER performance of various mSiO(2) particle-based ER fluids improved with an increasing aspect ratio due to the better flow resistance and mechanical stability. Moreover, an incremental increase in the aspect ratio enhanced the interfacial polarization of the material. Thus, mSiO(2) materials with a high aspect ratio exhibited the highest ER performance due to combined contributions from geometrical effects and their dielectric properties. In addition, various mSiO(2)-based ER fluids showed potential for large-scale production and a wide applicable range of electric field strengths (up to 10.0 kV mm(-1)).
机译:检查了介孔二氧化硅(mSiO(2))颗粒的电流变(ER)流体,以确定颗粒纵横比对ER性能的影响。使用溶胶-凝胶法以不同的长宽比制造了数克级的mSiO(2)颗粒。各种基于mSiO(2)颗粒的ER流体的ER性能随着纵横比的增加而提高,这归因于更好的流动阻力和机械稳定性。此外,长宽比的逐渐增加增强了材料的界面极化。因此,由于几何效应及其介电性能的综合作用,具有高纵横比的mSiO(2)材料显示出最高的ER性能。此外,各种基于mSiO(2)的ER流体显示出大规模生产的潜力和广泛的电场强度适用范围(高达10.0 kV mm(-1))。

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