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INSTABILITIES OF PRE-STRETCHED VISCOELASTIC FLOW IN MICROFLUIDIC CROSS-SLOT DEVICES

机译:微流控槽缝装置中预拉伸粘弹性流的不稳定性

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In this paper we experimentally studied the instabilities of pre-stretched viscoelastic fluid in cross-slot devices. We first investigate the instability of the flow in a standard cross-slot at different Weissenberg numbers without pre-stretch. It is found the viscoelastic flow is transformed from the steady symmetric state to the instabilities states including the steady asymmetric state and the non-periodically oscillated asymmetric state. This is due to the extension of the polymer in the viscoelastic fluid at the stagnation point stretched by the extensional flow in the cross-slot. We then modified the cross-slot channel in which the viscoelastic fluid is pre-stretched before entering the crossroad region. Due to the pre-stretch, elastic energy is pre-stored in the polymer, and the energy required to fully extend the polymer is also different with those extending from equilibrium state. As a result, the flow remains in the steady asymmetric state in all tested Weissenberg number condition.
机译:在本文中,我们通过实验研究了跨槽设备中预拉伸粘弹性流体的不稳定性。我们首先研究在没有预拉伸的情况下,在不同Weissenberg数下的标准十字槽中流动的不稳定性。发现粘弹性流从稳态对称状态转变为包括稳态非对称状态和非周期振动非对称状态的不稳定性状态。这是由于聚合物在粘弹性流体中在停滞点处的扩展,该停滞点由横向缝隙中的扩展流拉伸。然后,我们修改了跨槽通道,在该通道中,粘弹性流体在进入十字路口区域之前被预拉伸。由于预拉伸,弹性能被预存储在聚合物中,完全伸展聚合物所需的能量也与从平衡状态开始伸展的能量不同。结果,在所有测试的魏森贝格数条件下,流体保持稳定的不对称状态。

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