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Sedimentation stability and rheological properties of ionic liquid-based bidisperse magnetorheological fluids

机译:离子液体基双分散磁流变液的沉降稳定性和流变特性

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The sedimentation stability and rheological properties of ionic liquid-based magnetorheological fluids comprising a mixture of micron- and nano-sized particles were experimentally studied. Three different fluids with the same total particle concentration of 15vol% were prepared for testing: one containing only microparticles and two others in which 5 or 10wt% of the microparticles were replaced by nanoparticles. The nanoparticles were surface stabilized against oxidation. For comparison purposes, silicon oil-based magnetorheological fluids with similar solid fractions were also prepared and tested. The results indicate that, with ionic liquid as a carrier fluid, the addition of nanoparticles at 10wt% reduces the sedimentation rate almost by an order of magnitude from that without nanoparticles, while the reduction in the dynamic yield stress is only marginal. The ionic liquid-based fluids also had a better dispersion of particles.
机译:实验研究了包含微米级和纳米级颗粒混合物的离子液体基磁流变液的沉降稳定性和流变特性。制备了三种总总浓度为15vol%的不同流体进行测试:一种流体仅包含微粒,另外两种流体中有5或10wt%的微粒被纳米粒子代替。使纳米颗粒表面稳定以防氧化。为了进行比较,还制备并测试了具有相似固体成分的硅油基磁流变液。结果表明,使用离子液体作为载液,添加10wt%的纳米颗粒比不使用纳米颗粒时,沉降速率几乎降低了一个数量级,而动态屈服应力的降低只是很小的幅度。离子液体基流体还具有更好的颗粒分散性。

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