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A stable high-performance isotropic electrorheological elastomer towards controllable and reversible circular motion

机译:一种稳定的高性能各向同性电流弹性体,朝向可控和可逆的圆周运动

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摘要

In this paper, two kinds of isotropic giant electrorheological elastomers (GERE) were prepared with urea-coated barium titanyl oxalate nanoparticles as dielectric particles filler, poly (dimethyl siloxane) (PDMS) as an elastic matrix and silicone oil as a plasticizer. Such GEREs are far superior to other isotropic and even anisotropic electrorheological elastomers (EREs), showing excellent electrorheological (ER) performance. The theoretic mechanism in elastomers prepared by us should be explained by saturation surface polarization or orientational polarization model. More interestingly, the storage modulus increment (Delta G') of GEREs displays curvilinear dependence on the electric field due to poor particle mobility and different mobility under different electric fields, rather than a predicted linear variation. After testing their viscoelastic and dielectric properties and microstructures, we found that too high of the powder content leads to the serious agglomeration of particles and the performance degradation of the elastomer. An incorporation of silicone oil improved the dispersion state and wettability between the particles and matrix. At the same time, silicone oil reduced the hardness of the matrix and made the particles align more easily in the PDMS matrix. Lower initial modulus and higher field-induced modulus make GEREs containing silicone oil have ultrahigh storage modulus sensitivity, in which the best-performing sample achieved a storage modulus change exceeding 400 kPa and attained a maximum relative ER effect of 3280% at 3 kV/mm. Finally, the GERE was used to reversibly control the amplitude of circular motion within seconds by varying electric fields, revealing broad potential application in vibration control.
机译:在本文中,用尿素涂覆的硫酸钡纳米粒子制备两种各向同性巨型电流弹性体(GER​​E),作为介电颗粒填料,聚(二甲基硅氧烷)(PDMS)作为弹性基质和硅油作为增塑剂。这种GERES远远优于其他各向同性甚至各向异性的电流弹性体(ERES),显示出优异的电气学(ER)性能。由我们制备的弹性体中的理论机制应通过饱和表面偏振或取向偏振模型来解释。更有趣的是,由于在不同电场下的颗粒迁移率差和不同的移动性,而不是预测的线性变化,GERES的存储模量增量(Delta G')在电场上显示对电场的曲线依赖性,而不是预测的线性变化。在测试其粘弹性和介电性质和微观结构之后,我们发现太高的粉末含量导致颗粒的严重凝聚和弹性体的性能降解。硅油的掺入改善了颗粒和基质之间的分散状态和润湿性。同时,硅油降低了基质的硬度并使颗粒更容易在PDMS基质中对齐。较低的初始模量和更高的场诱导的模量使含有硅油的GERES具有超高储存模量灵敏度,其中最佳性能的样品实现超过400kPa的储存模量变化,并在3kV / mm处获得3280%的最大相对ER效果。 。最后,通过不同的电场,通过改变电场,在几秒钟内透露振动控制潜在应用。

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