Fingering instability in Marangoni spreading on a deep layer of polymer solution

Xue Ma, Menglin Zhong, Yifeng He, Zhanwei Liu, Zhenzhen Li
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引用次数: 13

Abstract

Spreading on the free surface of a complex fluid is ubiquitous in nature and industry, owing to the wide existence of complex fluids. Here we report on a fingering instability that develops during Marangoni spreading on a deep layer of polymer solution. In particular, the wavelength depends on molecular weight and concentration of the polymer solution. We use the Transmission Lattice Method to characterize the finger height at the micron scale. We model the evolution of spreading radius, involving viscoelastic and shear thinning effects, to suggest a more generalized law than the spreading of Newtonian fluids. We give physical explanation on the origin of the fingering instability as due to normal stresses at high shear rate generating high contact angle and deformation at the leading edge, and so selects the wavelength of the fingering instability. Understanding the spreading mechanism has particular implication in airway drug delivery, and surface coating with patterns.
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马兰戈尼在深层聚合物溶液中扩散的指指不稳定性
由于复杂流体的广泛存在,在复杂流体的自由表面上的扩散在自然界和工业中是普遍存在的。在这里,我们报告了在马兰戈尼在聚合物溶液的深层扩散过程中发展的指指不稳定性。特别是,波长取决于聚合物溶液的分子量和浓度。我们使用透射点阵法在微米尺度上表征手指的高度。我们模拟了扩散半径的演变,包括粘弹性和剪切变薄效应,以提出比牛顿流体扩散更广义的定律。对指法失稳的成因进行了物理解释,认为是由于高剪切速率下的法向应力产生了高接触角和前缘变形,从而选择了指法失稳的波长。了解其扩散机制对气道给药和表面涂膜具有特殊的意义。
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