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面向工业规模熔融加工的高性能聚酰胺6/纤维素纳米复合材料

High Performance PA 6/Cellulose Nanocomposites in the Interest of Industrial Scale Melt Processing.

作者信息

Sridhara Pruthvi K, Vilaseca Fabiola

机构信息

Advanced Biomaterials and Nanotechnology, Department of Chemical Engineering, University of Girona, 17003 Girona, Spain.

出版信息

Polymers (Basel). 2021 May 6;13(9):1495. doi: 10.3390/polym13091495.

Abstract

On an industrial scale, it is a challenge to achieve cellulose based nanocomposites due to dispersion issues and high process temperatures sensitivity. The current study describes methods to develop mechanically strong and thermally stable polyamide 6 (PA 6) and cellulose nanofibers (CNF) composites capable of tolerating high processing temperatures. With PA 6 being a very technical polymer matrix to be reinforced with CNF, good dispersion can be achieved with a high speed kinetic mixer and also shield the CNF from excess thermal degradation by implementing extremely short processing time. This paper presents an industrially feasible method to produce PA 6/CNF nanocomposites with high CNF composition processed by a high speed kinetic mixer (GELIMAT) followed by compression molding to obtain a homogenous and thermally stable nanocomposites aimed at high performance applications. PA 6 was reinforced with three different wt % formulations (5, 15 and 25 wt %) of cellulose nanofibers. The resulting nanocomposites exhibited significant increase in Young's modulus and ultimate strength with CNF content, owing to the effective melt processing and the surface charge density of the CNF, which necessitated the dispersion. The thermal stability and polymer crystallinity with respect to CNF composition for the PA 6/CNF nanocomposites were examined by TGA and DSC analysis. Rheology studies indicated that viscosity of the composites increased with increase in CNF composition. Overall, this work demonstrates industrially viable manufacturing processes to fabricate high performance PA 6/CNF nanocomposites.

摘要

在工业规模上,由于分散问题和对加工温度的高度敏感性,制备纤维素基纳米复合材料是一项挑战。当前的研究描述了开发能够耐受高加工温度的机械强度高且热稳定的聚酰胺6(PA 6)和纤维素纳米纤维(CNF)复合材料的方法。由于PA 6是一种要用CNF增强的非常技术性的聚合物基体,使用高速动态混合器可以实现良好的分散,并且通过采用极短的加工时间来保护CNF免于过度热降解。本文提出了一种工业上可行的方法,通过高速动态混合器(GELIMAT)加工具有高CNF含量的PA 6/CNF纳米复合材料,然后进行压缩成型,以获得用于高性能应用的均匀且热稳定的纳米复合材料。PA 6用三种不同重量百分比配方(5、15和25重量%)的纤维素纳米纤维增强。由于有效的熔融加工以及CNF的表面电荷密度(这需要分散),所得纳米复合材料的杨氏模量和极限强度随CNF含量显著增加。通过热重分析(TGA)和差示扫描量热法(DSC)分析研究了PA 6/CNF纳米复合材料相对于CNF组成的热稳定性和聚合物结晶度。流变学研究表明,复合材料的粘度随CNF组成的增加而增加。总体而言,这项工作展示了制造高性能PA 6/CNF纳米复合材料的工业可行制造工艺。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dc3/8124158/144f41e075c6/polymers-13-01495-g001.jpg

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