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静电纺丝聚乳酸基纤维纳米复合材料增强纤维素纳米晶体:纤维单轴取向对微观结构和力学性能的影响。

Electrospun Poly(lactic acid)-Based Fibrous Nanocomposite Reinforced by Cellulose Nanocrystals: Impact of Fiber Uniaxial Alignment on Microstructure and Mechanical Properties.

机构信息

Key Laboratory of Bio-based Material Science and Technology (Ministry of Education) , Northeast Forestry University , Harbin 150040 , P R China.

出版信息

Biomacromolecules. 2018 Mar 12;19(3):1037-1046. doi: 10.1021/acs.biomac.8b00023. Epub 2018 Feb 22.

Abstract

Uniform poly(lactic acid)/cellulose nanocrystal (PLA/CNC) fibrous mats composed of either random or aligned fibers reinforced with up to 20 wt % CNCs were successfully produced by two different electrospinning processes. Various concentrations of CNCs could be stably dispersed in PLA solution prior to fiber manufacture. The microstructure of produced fibrous mats, regardless of random or aligned orientation, was transformed from smooth to nanoporous surface by changing CNC loading levels. Aligning process through secondary stretching during high-speed collection can also affect the porous structure of fibers. With the same CNC loading, fibrous mats produced with aligned fibers had higher degree of crystallinity than that of fibers with random structure. The thermal properties and mechanical performances of PLA/CNC fibrous mats can be enhanced, showing better enhancement effect of aligned fibrous structure. This results from a synergistic effect of the increased crystallinity of fibers, the efficient stress transfer from PLA to CNCs, and the ordered arrangement of electrospun fibers in the mats. This research paves a way for developing an electrospinning system that can manufacture high-performance CNC-enhanced PLA fibrous nanocomposites.

摘要

由两种不同的静电纺丝工艺成功制备了由随机或定向纤维增强的高达 20wt%的纤维素纳米晶(CNC)的均匀聚乳酸/纤维素纳米晶(PLA/CNC)纤维垫。在纤维制造之前,各种浓度的 CNC 可以在 PLA 溶液中稳定分散。无论定向或随机取向如何,通过改变 CNC 的负载水平,所生产的纤维垫的微观结构都从光滑表面转变为纳米多孔表面。在高速收集过程中通过二次拉伸进行的对准过程也会影响纤维的多孔结构。在相同的 CNC 负载下,与具有随机结构的纤维相比,具有定向纤维的纤维垫具有更高的结晶度。PLA/CNC 纤维垫的热性能和机械性能可以得到增强,具有定向纤维结构的增强效果更好。这是由于纤维结晶度的增加、PLA 到 CNC 有效应力传递以及纤维在垫子中的有序排列的协同作用。该研究为开发可制造高性能 CNC 增强 PLA 纤维纳米复合材料的静电纺丝系统铺平了道路。

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