界面改性剂存在下不相容聚合物共混物的在线形态发展

ty10086 提交于 周三, 08/25/2021 - 17:27
文章英文标题
Online Morphology Development of Immiscible Polymer Blends in the Presence of an Interfacial Modifier
正文
本研究重点研究了在界面改性剂含量较高的情况下,典型的不相容聚合物共混物在剪切流场作用下的在线形貌发展。共混组分为常温流体。为了更紧密地跟踪形貌发展的细节,选择了一种滴入式基体结构。基体和分散相分别为各种黏度的聚异丁烯( PIB )和聚二甲基硅氧烷( PDMS )。选定的三种PDMS粘度在室温下产生了广泛的粘度比,即0.04 ~ 2.3。两种聚合物在所研究的剪切速率范围内均表现出牛顿流体行为,未观察到法向力。界面改性剂为双嵌段共聚物,包括PIB和PDMS嵌段,分子量接近。剪切流场采用同轴圆柱系统。各缸速度分别控制。在没有界面改性剂的情况下,共混体系的结果与前人的研究结果相似。对于干净的液滴,观察到对称的破裂,其破裂液滴的数目为奇数。界面改性剂的加入极大地影响了共混物的形态发展。增容液滴的变形与相应的干净液滴的变形有较大差异。分手不再是对称和可预测的。黏度比对增容液滴的形态发育起决定作用。低粘度比和高粘度比下液滴的变形和破裂情况并不相同。而低粘度比的增容液滴在低剪切速率下表现为尖流,高粘度比的增容液滴表现为端钉扎。
文章内容(英文)
This study focuses on the online morphology development of a typical immiscible polymer blend subjected to a shear flow field in the presence of the high percentage of an interfacial modifier. The blend components were fluid at room temperature. To follow the details of the morphology development more closely, a drop-in-matrix structure was selected. The matrix and the dispersed phases were polyisobutylene (PIB) and polydimethylsiloxane (PDMS) of various viscosities, respectively. The selected three viscosities of PDMS generated a wide range of viscosity ratios, i.e., 0.04 to 2.3, at room temperature. Both polymers exhibited Newtonian behavior over the investigated shear rate range and no normal forces were observed. The interfacial modifier was a diblock copolymer including PIB and PDMS blocks with close molecular weight. The shear flow field was made using a coaxial cylinders system. The velocity of each cylinder was controlled separately. The results obtained for the blend system in the absence of an interfacial modifier were similar to the observations of previous researchers. A symmetrical breakup was observed for clean drops with the odd number of the resulting breakup droplets. The addition of the interfacial modifier drastically influenced the blend morphology development. The deformation of the compatibilized drops was considerably different from the deformation observed for the corresponding clean counterparts. The breakup was no longer symmetrical and predictable. The viscosity ratio played a determining role in morphology development of the compatibilized drop. The deformation and breakup of the drops at low and high viscosity ratios were not similar. While the low viscosity ratio of the compatibilized drops demonstrated tip-streaming at low shear rates and the high viscosity ratio of the drops showed end-pinching.
来源出处
Journal|[J]Iranian Journal of Polymer Science and Technology (IJPST)Volume 29, Issue 6. 2017. PP 571-582
DOI
https://doi.org/10.22063/jipst.2017.1444

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