首页> 外文会议>International Conference on Electrorheological Fluids and Magnetorheological Suspensions >ELECTRORHEOLOGICAL PROPERTIES AND THE ENHANCED POLARIZATION MECHANISM FOR THE METAL CATIONS MODIFIED AMORPHOUS TIO2 BASED ELECTRORHEOLOGICAL MATERIALS
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ELECTRORHEOLOGICAL PROPERTIES AND THE ENHANCED POLARIZATION MECHANISM FOR THE METAL CATIONS MODIFIED AMORPHOUS TIO2 BASED ELECTRORHEOLOGICAL MATERIALS

机译:金属阳离子改性无定形TiO2电流材料的电潮性和增强偏振机制

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In the present work, we developed a new kind of electrorheological (ER) materials, metal cations modified amorphous TiO2 gel. The bulk density of gel particles is 2.36 g/cm3 determined with a pyenometer. The morphology of the gel particle is irregular, and the diameter of gel particles is distributed mainly in the range from 50 nm to 150 nm. The XRD pattern shows the TiO2 gel has an amorphous structure and the amorphous structure of the TiO2 gel particle is an important feature of our ER materials. An infrared spectrum of the amorphous TiO2 gel shows the number of hydroxyl groups will increase when it was modified by metal cations. The ER behaviors of suspensions of pure and metal cations modified amorphous TiO2 particles in siliconc oil have been investigated under a dc electric field. The static yield stress of Sn4+ modified amorphous TiO2 gels with a volume fraction =38% reaches 26.2 kPa at E=3.5 kV/mm and the leaking current density is about 42.2 v A/cm2 at 3.5 kV/mm. The induced shear stress did not change for a long period of time. The ER fluid has a long-term stability against sedimentation. We then proposed a novel ER effect mechanism, metal cations enhanced polarization mechanism, to clarify the experimental results. We believe that it is the metal cations enhanced the polarization of the hydroxyl groups (-OH) which were contained in the amorphous TiO2 gel that result to the corresponding enhancement of the interfacial polarization.
机译:在目前的工作中,我们开发了一种新型的电气流变(ER)材料,金属阳离子改性无定形TiO2凝胶。凝胶颗粒的堆积密度为2.36g / cm 3,用肾盂卷测定。凝胶颗粒的形态是不规则的,并且凝胶颗粒的直径主要分布在50nm至150nm的范围内。 XRD图案显示TiO2凝胶具有无定形结构,TiO 2凝胶颗粒的无定形结构是我们ER材料的重要特征。无定形TiO2凝胶的红外光谱显示通过金属阳离子改性羟基的数量将增加。在直流电场下研究了纯和金属阳离子悬浮液的悬浮液的ER行为,改性了硅油中的无定形TiO2颗粒。具有体积分数 = 38%的SN4 +改性无定形TiO2凝胶的静态屈服应力达到26.2kPa,在e = 3.5kV / mm,漏电流密度为3.5kV / mm的42.2V a / cm2。诱导的剪切应力在很长一段时间内没有改变。 ER流体具有抗沉降的长期稳定性。然后,我们提出了一种新型ER效应机制,金属阳离子增强偏振机制,阐明了实验结果。我们认为,金属阳离子增强了包含在无定形TiO 2凝胶中的羟基(-OH)的偏振,其导致界面极化的相应增强。

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