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首页> 外文期刊>Journal of Rheology >Nuclear magnetic resonance imaging investigation of sedimentation of concentrated suspensions in non-Newtonian fluids
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Nuclear magnetic resonance imaging investigation of sedimentation of concentrated suspensions in non-Newtonian fluids

机译:非牛顿流体浓缩悬浮液沉降的核磁共振成像研究

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Nuclear magnetic resonance imaging is used to study rates of sedimentation in several non-Newtonian fluids. It is shown that either shear thinning or elasticity in a fluid can result in a time-dependent sedimentation rate, as measured by the motion of the suspension-supernatant interface. Sedimentation is most rapid at the beginning of the process, and grows steadily slower in time. Two-dimensional images of vertical sections of suspension show clearly the development of a nonhomogeneous microstructure during sedimentation in a viscoelastic fluid. Elongated columns of particles form in the direction of gravity, and these columns are separated by comparably sized regions of pure fluid. Such structures are not present in sedimentation in Newtonian fluids, where the suspension microstructure is homogeneous for the duration of the process.
机译:核磁共振成像用于研究几种非牛顿流体中的沉积速率。结果表明,剪切稀化或流体中的弹性可导致随时间变化的沉降速率,这是通过悬浮液-上清液界面的运动来测量的。沉积过程开始时沉淀速度最快,并且随着时间的增长逐渐减慢。悬浮液垂直截面的二维图像清楚地显示了在粘弹性流体中沉积过程中非均匀微观结构的发展。细长的颗粒柱在重力方向上形成,这些柱被大小相等的纯流体区域隔开。这种结构在牛顿流体的沉积中不存在,在此过程中悬浮液的微结构是均匀的。

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