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Microfluidic extensional rheometry using a hyperbolic contraction geometry

机译:使用双曲收缩几何的微流延流变学

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Microfluidic devices are ideally suited for the study of complex fluids undergoing large deformation rates in the absence of inertial complications. In particular, a microfluidic contraction geometry can be utilized to characterize the material response of complex fluids in an extensionally-dominated flow, but the mixed nature of the flow kinematics makes quantitative measurements of material functions such as the true extensional viscosity challenging. In this paper, we introduce the 'extensional viscometer-rheometer-on-a-chip' (EVROC), which is a hyperbolically-shaped contraction-expansion geometry fabricated using microfluidic technology for characterizing the importance of viscoelastic effects in an extensionally-dominated flow at large extension rates (λ ε?_a ? 1, where λ is the characteristic relaxation time, or for many industrial processes ε?_a ?1s~(-1)). We combine measurements of the flow kinematics, the mechanical pressure drop across the contraction and spatially-resolved flow-induced birefringence to study a number of model rheological fluids, as well as several representative liquid consumer products, in order to assess the utility of EVROC as an extensional viscosity indexer.
机译:微流体装置非常适合研究在没有惯性并发症的情况下经历大变形速率的复杂流体。特别地,微流体的收缩几何形状可用于表征扩展支配流动中复杂流体的材料响应,但是流动运动学的混合特性使得对材料功能(例如真实的拉伸粘度)进行定量测量具有挑战性。在本文中,我们介绍了“片上扩展粘度计-流变仪”(EVROC),它是使用微流体技术制造的双曲形收缩-扩展几何形状,用于表征在扩展为主的流动中粘弹性效应的重要性在较大的扩展速率下(λεα_a≤1,其中λ是特征弛豫时间,或者对于许多工业过程而言εδ_a≤1s〜(-1))。我们结合流动运动学,收缩时的机械压降和空间分辨的流动引起的双折射的测量结果,以研究多种模型流变流体以及几种代表性的液体消费品,以评估EVROC的实用性。拉伸粘度指数仪。

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