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A new parallel plate shear cell for in situ real-space measurements of complex fluids under shear flow

机译:一种新的平行板剪切单元,用于剪切流动下复杂流体的原位实空间测量

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摘要

We developed and tested a parallel plate shear cell that can be mounted on top of an inverted microscope to perform confocal real-space measurements on complex fluids under shear. To follow structural changes in time, a plane of zero velocity is created by letting the plates move in opposite directions. The location of this plane is varied by changing the relative velocities of the plates. The gap width is variable between 20 and 200μm with parallelism better than 1μm . Such a small gap width enables us to examine the total sample thickness using high numerical aperture objective lenses. The achieved shear rates cover the range of 0.02–10 3 s −1 . This shear cell can apply an oscillatory shear with adjustable amplitude and frequency. The maximum travel of each plate equals 1cm , so that strains up to 500 can be applied. For most complex fluids, an oscillatory shear with such a large amplitude can be regarded as a continuous shear. We measured the flow profile of a suspension of silicacolloids in this shear cell. It was linear except for a small deviation caused by sedimentation. To demonstrate the excellent performance and capabilities of this new setup we examined shear induced crystallization and melting of concentrated suspensions of 1μm diameter silicacolloids.
机译:我们开发并测试了可安装在倒置显微镜顶部的平行板剪切池,可对剪切下的复杂流体进行共聚焦实空间测量。为了跟随时间的结构变化,通过使板沿相反的方向移动来创建速度为零的平面。通过改变板的相对速度来改变该平面的位置。间隙宽度在20至200μm之间变化,平行度优于1μm。如此小的间隙宽度使我们能够使用高数值孔径的物镜检查总样品厚度。达到的剪切速率覆盖0.02–10 3 s -1的范围。该剪切单元可以施加振幅和频率可调的振荡剪切。每块板的最大行程等于1cm,因此可以施加高达500的应变。对于大多数复杂流体,具有如此大振幅的振荡剪切可被视为连续剪切。我们测量了该剪切池中二氧化硅胶体悬浮液的流动特性。它是线性的,除了由沉降引起的小偏差。为了证明这种新装置的出色性能和功能,我们检查了剪切诱导的结晶和1μm直径二氧化硅胶体浓缩悬浮液的熔化。

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