The role of water in electrorheological fluids

W. Wong, M. Shaw
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引用次数: 10

Abstract

The role of water in ER (electrorheological) fluid systems is investigated by correlating its physical state with the rheological properties of the fluid. In particular, the suitability of the water bridging model of the ER effect is evaluated. The electrorheology of three model fluids was studied as a function of electric field strength, moisture content, and placement under dynamic oscillatory shearing. It has been demonstrated that an ER fluid with a porous hydrophilic dispersed phase may behave very similarly to one with a nonporous hydrophobic dispersed phase. A novel ER fluid was prepared using a microencapsulated dispersed phase containing an abundance of water. It was found that although water was present in large amounts, as long as it was segregated from the continuous interparticle environment, the ER effect was greatly diminished from what one would expect based on this criterion alone. The results are in agreement with the idea that interparticle bridging by water may be an important aspect of the ER effect.<>
水在电流变流体中的作用
通过将水的物理状态与流体的流变特性相关联,研究了水在电流变流体系统中的作用。特别地,评价了ER效应的水桥模型的适用性。在动态振荡剪切作用下,研究了三种模型流体的电流变特性与电场强度、含水率和放置位置的关系。已经证明,具有多孔亲水性分散相的内质网流体的行为可能与具有非多孔疏水性分散相的内质网流体非常相似。利用含有丰富水分的微囊化分散相制备了一种新型的电流变流体。结果发现,尽管水大量存在,但只要将其从连续的粒子间环境中分离出来,内电效应就会大大减少,这是仅根据这一标准所期望的。结果与粒子间水桥接可能是内质效应的一个重要方面的观点一致。
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