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Wet-Induced Fabrication of Heterogeneous Hump-on-String Fibers

机译:湿诱导异质驼峰纤维的制备

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摘要

Inspired by the high adhesiveness of the electrospun fiber, we propose a method to fabricate multi-scale heterogeneous hump-on-string fiber via the adsorption of nanoparticles, the NPCTi which is the hydrolysate of titanium tetrachloride (TiCl4) and the nanoparticles containing Al (NPCAl) which is produced by the hydrolysis of Trimethylaluminium (TMA, Al(CH3)3). The water collection efficiency of the fibers can be easily controlled via changing not only the size of the beads but also the ratio of the Ti and Al. In addition, we introduce a computational fluid dynamics (CFD) simulation to show the pressure distribution of on the surface of the fibers, which gives another explanation regarding the high water collection efficiency.
机译:受静电纺丝纤维高粘合性的启发,我们提出了一种通过吸附纳米颗粒,四氯化钛(TiCl4)和含有Al(由三甲基铝(TMA,Al(CH3)3)水解制得的NPCAl)。通过不仅改变珠的尺寸而且改变Ti和Al的比例,可以容易地控制纤维的集水效率。此外,我们引入了计算流体动力学(CFD)仿真来显示纤维表面上的压力分布,这为高集水效率提供了另一种解释。

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