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Maximum spreading of a shear-thinning liquid drop impacting on dry solid surfaces

机译:稀疏剪切液滴最大程度地散布在干燥的固体表面上

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摘要

In the present study, the maximum spreading of Newtonian and shear-thinning drops impacting on dry surfaces was investigated experimentally. Water, glycerin drops (Newtonian liquids) and xanthan drops (shear-thinning liquids) were impinged upon the flat surfaces of glass, stainless steel and parafilm-M substrates, which have hydrophilic, moderate and hydrophobic properties, respectively, at the impact velocities ranging from 0.8 to 4.0. m/s. The impact velocity and the liquid viscosity with the shear-thinning characteristic had dominant effects on the maximum spreading; on the other hand, the surface wettability effect turned out to be minor. Several maximum spreading models for a Newtonian liquid were reviewed briefly and compared with the experimental measurements. The Roisman model showed the best agreement to the experimental results for Newtonian drops. A new empirical correlation for the maximum spreading of a shear-thinning drop was proposed by modifying the Scheller and Bousfield model with the concept of the effective shear viscosity, which is correlated with the shear rate varying with the impact velocity. The correlation agreed to within ±5% for 91% of the shear-thinning drop experiments.
机译:在本研究中,通过实验研究了牛顿和剪切稀化液滴在干燥表面上的最大扩散。将水,甘油滴(牛顿液体)和黄原胶滴(稀于剪切的液体)撞击在玻璃,不锈钢和parafilm-M基材的平坦表面上,这些基材在冲击速度范围内分别具有亲水性,中等和疏水性从0.8到4.0。多发性硬化症。具有剪切稀化特性的冲击速度和液体粘度对最大铺展具有主要影响。另一方面,表面润湿性效果很小。简要回顾了牛顿液体的几种最大扩散模型,并将其与实验测量值进行了比较。 Roisman模型显示出与牛顿滴实验结果的最佳一致性。通过使用有效剪切粘度的概念修改Scheller和Bousfield模型,提出了剪切稀疏液滴最大扩展的新的经验相关性,该模型与剪切速率随冲击速度的变化相关。对于91%的剪切稀化实验,相关性在±5%之内。

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