膨胀的
剪切速率
流变学
材料科学
磁流变液
剪切(地质)
剪应力
剪切流
复合材料
产量(工程)
悬挂(拓扑)
机械
热力学
数学
物理
阻尼器
同伦
纯数学
作者
Eric Brown,Nicole A. Forman,Carlos Orellana,Hanjun Zhang,Benjamin W. Maynor,Douglas E. Betts,Joseph M. DeSimone,Heinrich M. Jaeger
出处
期刊:Nature Materials
[Springer Nature]
日期:2010-01-31
卷期号:9 (3): 220-224
被引量:347
摘要
Suspensions are of wide interest and form the basis for many smart fluids. For most suspensions, the viscosity decreases with increasing shear rate, that is, they shear thin. Few are reported to do the opposite, that is, shear thicken, despite the longstanding expectation that shear thickening is a generic type of suspension behaviour. Here we resolve this apparent contradiction. We demonstrate that shear thickening can be masked by a yield stress and can be recovered when the yield stress is decreased below a threshold. We show the generality of this argument and quantify the threshold in rheology experiments where we control yield stresses arising from a variety of sources, such as attractions from particle surface interactions, induced dipoles from applied electric and magnetic fields, as well as confinement of hard particles at high packing fractions. These findings open up possibilities for the design of smart suspensions that combine shear thickening with electro- or magnetorheological response.
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