论文标题
剪切薄聚合物膜的易碎动力学:一项实验研究
Dewetting dynamics of sheared thin polymer films: an experimental study
论文作者
论文摘要
据报道,剪切对嵌入不混溶基质中的熔融超薄聚合物膜破裂的影响。通过使用光学显微镜与剪切热舞台结合使用,脱水动力学,即,随着时间的推移,脱水孔的生长以各种剪切速率进行监测。据观察,它们的圆形是通过剪切修改的,并且对于所研究的所有温度和厚度,形成的孔的生长速度随着剪切速率的提高而迅速增加。然后提出了一个模型平衡毛细作用力和粘性耗散的,然后提出了剪切粉化的同时,并捕获了实验数据的主要特征,例如孔的椭圆形形状和平行于剪切方向的速度更快的动力学。这项研究将有助于理解在分层聚合结构(例如多层共截止)过程中发生的不稳定性。
An experimental investigation is reported on the effect of shear on the bursting of molten ultra-thin polymer films embedded in an immiscible matrix. By using an optical microscope coupled with a shearing hotstage, the dewetting dynamics, i.e. the growth of dewetting holes is monitored over time at various shear rates. It is observed that their circularity is modified by shear and that for all temperatures and thicknesses studied, the growth speed of the formed holes rapidly increases with increasing shear rate. A model balancing capillary forces and viscous dissipation while taking into account shear-thinning is then proposed and captures the main features of the experimental data, such as the ellipsoid shape of the holes and the faster dynamics in the direction parallel to the shear. This research will help to understand the instabilities occurring during processing of layered polymeric structures, such as multilayer coextrusion.