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Synthesis and electrorheological properties of oxalate group-modified amorphous titanium oxide nanoparticles

机译:草酸酯基修饰的非晶态二氧化钛纳米粒子的合成及流变性能

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摘要

A kind of titanium oxide nanoparticles modified with varying amounts of oxalate group was prepared using a modified hydrolysis method. The microstructure, dielectric properties, and electrorheological (ER) performance were investigated. The results indicate that the oxalate group can effectively improve the dielectric properties and surface polarizability of the particles, and the ER performance of modified titanium oxide-based ER fluid is much higher than that of pure titanium oxide-based ER fluid. The shear stress of suitable oxalate group-modified amorphous titanium oxide-based ER fluid with a volume fraction of 30% reaches 47.5 kPa at E=5 kV/mm, and the current density is less than 18 μAcm~(-2). The yield stress can be up to 114 kPa at E=5 kV/mm with a volume fraction of 40%.
机译:采用改进的水解方法制备了一种草酸根含量不同的改性二氧化钛纳米粒子。研究了微观结构,介电性能和电流变性能。结果表明,草酸盐基团可以有效地改善颗粒的介电性能和表面极化性,并且改性的基于氧化钛的ER流体的ER性能比纯的基于氧化钛的ER流体的ER性能高得多。合适的草酸酯基改性的非晶态二氧化钛基ER流体在E = 5 kV / mm时的剪切应力达到47.5 kPa,电流密度小于18μAcm〜(-2)。在E = 5 kV / mm时,屈服应力可以达到114 kPa,体积分数为40%。

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