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Investigation of particle lateral migration in sample-sheath flow of viscoelastic fluid and Newtonian fluid

机译:粘弹性流体和牛顿流体样品鞘流中颗粒横向迁移的研究

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In this work, particle lateralmigration in sample-sheath flow of viscoelastic fluid and Newtonian fluid was experimentally investigated. The 4.8-mu m micro-particles were dispersed in a polyethylene oxide (PEO) viscoelastic solution, and then the solution was injected into a straight rectangular channel with a deionised (DI) water Newtonian sheath flow. Micro-particles suspended in PEO solution migrated laterally to a DI water stream, but migration in the opposite direction from a DI water stream to a PEO solution stream or from one DI water stream to another DI water stream could not be achieved. The lateral migration of particles depends on the viscoelastic properties of the sample fluids. Furthermore, the effects of channel length, flow rate, and PEO concentration were studied. By using viscoelastic sample flow and Newtonian sheath flow, a selective particle lateral migration can be achieved in a simple straight channel, without any external force fields. This particle lateral migration technique could be potentially used in solution exchange fields such as automated cell staining and washing in microfluidic platforms, and holds numerous biomedical applications.
机译:在这项工作中,实验研究了粘弹性流体和牛顿流体的样品鞘流中的颗粒横向迁移。将4.8微米的微粒分散在聚环氧乙烷(PEO)粘弹性溶液中,然后将溶液注入具有去离子(DI)水牛顿鞘流的直矩形通道中。悬浮在PEO溶液中的微粒横向迁移到DI水流中,但是无法实现从DI水流到PEO溶液流或从一个DI水流到另一个DI水流的相反方向迁移。颗粒的横向迁移取决于样品流体的粘弹性质。此外,研究了通道长度,流速和PEO浓度的影响。通过使用粘弹性样品流和牛顿鞘流,可以在简单的直通道中实现选择性的颗粒横向迁移,而无需任何外力场。这种颗粒侧向迁移技术可潜在地用于溶液交换领域,例如在微流体平台上进行自动细胞染色和洗涤,并拥有众多的生物医学应用。

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