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Is microrheometry affected by channel deformation?

机译:微量流变学会受到通道变形的影响吗?

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摘要

Microrheometry is very important for exploring rheological behaviours of several systems when conventional techniques fail. Microrheometrical measurements are usually carried out in microfluidic devices made of Poly(dimethylsiloxane) (PDMS). Although PDMS is a very cheap material, it is also very easy to deform. In particular, a liquid flowing in a PDMS device, in some circumstances, can effectively deform the microchannel, thus altering the flow conditions. The measure of the fluid relaxation time might be performed through viscoelasticity induced particle migration in microfluidics devices. If the channel walls are deformed by the flow, the resulting measured value of the relaxation time could be not reliable. In this work, we study the effect of channel deformation on particle migration in square-shaped microchannel. Experiments are carried out in several PolyEthylene Oxyde solutions flowing in two devices made of PDMS and Poly(methylmethacrylate) (PMMA). The relevance of wall rigidity on particle migration is investigated, and the corresponding importance of wall rigidity on the determination of the relaxation time of the suspending liquid is examined.
机译:当常规技术失败时,微流变仪对于探索几个系统的流变行为非常重要。微量流变测量通常在由聚二甲基硅氧烷(PDMS)制成的微流体装置中进行。尽管PDMS是一种非常便宜的材料,但它也很容易变形。特别地,在某些情况下,在PDMS设备中流动的液体可以有效地使微通道变形,从而改变流动条件。流体弛豫时间的测量可以通过粘弹性在微流体装置中引起的颗粒迁移来进行。如果通道壁由于流动而变形,则松弛时间的所得测量值可能不可靠。在这项工作中,我们研究了通道变形对方形微通道中颗粒迁移的影响。实验是在几种由PDMS和聚甲基丙烯酸甲酯(PMMA)制成的装置中流动的几种聚环氧乙烷溶液中进行的。研究了壁刚度与颗粒迁移的相关性,并研究了壁刚度对确定悬浮液弛豫时间的重要性。

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