School of Mechanical Engineering, Korea University , Seoul 02841, Republic of Korea.
Department of Mechanical and Industrial Engineering, University of Illinois at Chicago , 842 W. Taylor Street, Chicago, Illinois 60607-7022, United States.
Langmuir. 2017 Oct 10;33(40):10663-10672. doi: 10.1021/acs.langmuir.7b02950. Epub 2017 Sep 26.
Here we study experimentally the behavior of liquid healing agents released in vascular core-shell nanofiber mats used in self-healing engineered materials. It is shown that wettability-driven spreading of liquid drops is accompanied by the imbibition into the nanofiber matrix, and its laws deviate from those known for spreading on an intact surface. We also explore coalescence of the released drops on nanofiber mats, in particular, coalescence of drops of resin monomer and cure important for self-healing. The coalescence process is also affected by the imbibition into the pores of an underlying nanofiber mat. A theoretical model is developed to account for the imbibition effect on drop coalescence.
在这里,我们研究了用于自修复工程材料的血管核壳纳米纤维垫中释放的液体愈合剂的行为。结果表明,液滴的润湿性驱动扩展伴随着向纳米纤维基质的吸液,其规律偏离了在完整表面上扩展的规律。我们还研究了在纳米纤维垫上释放的液滴的聚结,特别是对自修复很重要的树脂单体和固化剂液滴的聚结。聚结过程也受到下伏纳米纤维垫的孔吸液的影响。我们开发了一个理论模型来解释吸液对液滴聚结的影响。