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Jamming and unjamming transition of oil-in-water emulsions under continuous temperature change

机译:连续温度变化下水包油型乳液的堵塞和去干扰转变

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摘要

To analyze the jamming and unjamming transition of oil-in-water emulsions under continuous temperature change, we simulated an emulsion system whose critical volume fraction was 0.3, which was validated with experimental results under oscillatory shear stress. In addition, we calculated the elastic modulus using the phase lag between strain and stress. Through heating and cooling, the emulsion experienced unjamming and jamming. A phenomenon—which is when the elastic modulus does not reach the expected value at the isothermal system—occurred when the emulsion system was cooled. We determined that this phenomenon was caused by the frequency being faster than the relaxation of the deformed droplets. We justified the relation between the frequency and relaxation by simulating the frequency dependency of the difference between the elastic modulus when cooled and the expected value at the same temperature.
机译:为了分析连续温度变化下水包油型乳剂的堵塞和脱干扰转变,我们模拟了临界体积分数为0.3的乳液体系,并在振荡剪切应力下得到了实验结果。另外,我们使用应变和应力之间的相位滞后来计算弹性模量。通过加热和冷却,乳液会出现堵塞和堵塞现象。冷却乳液系统时,会出现一种现象(即在等温系统下弹性模量未达到预期值)。我们确定这种现象是由于频率比变形液滴的松弛快而引起的。我们通过模拟冷却时的弹性模量与相同温度下的期望值之间的频率依赖性来证明频率与松弛之间的关系。

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