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Microfluidic viscometers for shear rheology of complex fluids and biofluids

机译:微流体粘度计用于复杂流体和生物流体的剪切流变学

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摘要

The rich diversity of man-made complex fluids and naturally occurring biofluids is opening up new opportunities for investigating their flow behavior and characterizing their rheological properties. Steady shear viscosity is undoubtedly the most widely characterized material property of these fluids. Although widely adopted, macroscale rheometers are limited by sample volumes, access to high shear rates, hydrodynamic instabilities, and interfacial artifacts. Currently, microfluidic devices are capable of handling low sample volumes, providing precision control of flow and channel geometry, enabling a high degree of multiplexing and automation, and integrating flow visualization and optical techniques. These intrinsic advantages of microfluidics have made it especially suitable for the steady shear rheology of complex fluids. In this paper, we review the use of microfluidics for conducting shear viscometry of complex fluids and biofluids with a focus on viscosity curves as a function of shear rate. We discuss the physical principles underlying different microfluidic viscometers, their unique features and limits of operation. This compilation of technological options will potentially serve in promoting the benefits of microfluidic viscometry along with evincing further interest and research in this area. We intend that this review will aid researchers handling and studying complex fluids in selecting and adopting microfluidic viscometers based on their needs. We conclude with challenges and future directions in microfluidic rheometry of complex fluids and biofluids.
机译:人造复杂流体和天然存在的生物流体的丰富多样性为研究其流动行为和表征其流变特性提供了新的机会。稳定的剪切粘度无疑是这些流体最广泛表征的材料性能。尽管被广泛采用,但大型流变仪受到样品量,获得高剪切速率,流体动力不稳定性和界面伪影的限制。当前,微流体设备能够处理少量样品,提供对流量和通道几何形状的精确控制,实现高度的多路复用和自动化,并集成了流量可视化和光学技术。微流体技术的这些固有优势使其特别适用于复杂流体的稳定剪切流变学。在本文中,我们综述了微流体技术在复杂流体和生物流体的剪切粘度测定中的应用,重点是粘度曲线与剪切速率的关系。我们讨论了不同微流体粘度计的物理原理,它们的独特功能和操作限制。这种技术选择的汇编将潜在地促进微流体粘度测定的好处,并引起人们对该领域的进一步兴趣和研究。我们希望本次审查将有助于研究人员根据需要选择和采用微流体粘度计,以处理和研究复杂流体。我们以复杂流体和生物流体的微流变流变学中的挑战和未来方向作为总结。

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