液滴撞击覆盖着薄聚合物液层的液体池
Akash Chowdhury1, Sirshendu Misra1, Surjyasish Mitra1
1Micro & Nano-Scale Transport Laboratory, Waterloo Institute for Nanotechnology, Department of Mechanical and Mechatronics Engineering, University of Waterloo, 200 University Avenue West, Waterloo, Ontario N2L 3G1, Canada.
Langmuir : the ACS journal of surfaces and colloids
|April 1, 2025
概括
滴滴对液体层的冲击会导致丝变薄. 牛顿式液体呈现线性稀释,而粘弹性液体呈现指数性稀释,有助于理解封装过程.
科学领域:
- 流体动力学 流体动力学
- 聚合物科学 聚合物科学
- 接口现象 接口现象
背景情况:
- 液体-液体封装对于各种商业应用至关重要.
- 了解滴滴撞击期间的界面动态是过程优化的关键.
- 聚合物液体表现出复杂的行为,包括粘性弹性,影响封装.
研究的目的:
- 在液滴撞击聚合物界面液层后,研究光线稀释过程.
- 为了区分牛顿式和粘弹性液体之间的稀释动力学.
- 为了提高对液体-液体封装动态的理解.
主要方法:
- 实验使用部分固化的聚二甲基溶液和聚烯凝/液体混合物进行.
- 在滴滴撞击浮动的界面液层后观察到界面动态.
- 细化线的动力学分析了牛顿式和粘弹性流体行为.
主要成果:
- 滴滴撞击最初会产生一个空气腔,然后是丝变薄.
- 最初的快速稀释归因于火山口的收缩,随后是较慢的稀释阶段.
- 牛顿式液体显示线性稀释动力学,而粘弹性液体显示指数动力学.
结论:
- 这项研究阐明了基于流体性质的液体-液体封装中明显的线材稀释行为.
- 这些发现为在滴滴撞击过程中聚合物界面层的动态提供了关键的见解.
- 这种知识对于优化和商业化液体-液体封装技术至关重要.
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