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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Preparation and characterization of iron-based magnetorheological fluids stabilized by addition of organoclay particles
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Preparation and characterization of iron-based magnetorheological fluids stabilized by addition of organoclay particles

机译:通过添加有机粘土颗粒稳定的铁基磁流变液的制备和表征

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摘要

Suspensions of micrometer-sized iron particles (10 vol %) dispersed in kerosene and stabilized by addition of organoclay particles were prepared. The magnetization curves of these suspensions were measured, and their sedimentation and redispersion behaviors were analyzed as a function of clay concentration by means of optical and theological methods. Furthermore, their magnetorheological properties were investigated using a controlled rate magnetorheometer and the effect of clay concentration on these properties was also analyzed. These experiments showed that the addition of clay slows down iron particle settling and eases the redispersion of the iron-based suspensions without masking their magnetorheological properties. Two mechanisms were found to be involved in this behavior: (i) the formation of a clay gel network and (ii) the presence of heterogeneous iron-clay adhesion.
机译:制备了分散在煤油中并通过添加有机粘土颗粒使其稳定的微米级铁颗粒(10%(体积))的悬浮液。测量了这些悬浮液的磁化曲线,并通过光学和神学方法分析了它们的沉降和再分散行为与粘土浓度的关系。此外,使用控制速率磁流变仪研究了它们的磁流变性质,并分析了粘土浓度对这些性质的影响。这些实验表明,粘土的添加减慢了铁颗粒的沉降,并简化了铁基悬浮液的再分散,而不会掩盖其磁流变特性。发现此行为涉及两种机理:(i)粘土凝胶网络的形成和(ii)异质铁-粘土粘附的存在。

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