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采用混合填料法简便制备纤维素纤维增强聚丙烯

Facile Preparation of Cellulose Fiber Reinforced Polypropylene Using Hybrid Filler Method.

作者信息

Mustapha Safarul, Lease Jacqueline, Eksiler Kubra, Sim Siew Teng, Ariffin Hidayah, Andou Yoshito

机构信息

Department of Biological Functions Engineering, Graduate School of Life Science and Systems Engineering, Kyushu Institute of Technology, 2-4 Hibikino, Wakamatsu, Fukuoka, Kitakyushu 808-0196, Japan.

Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia (UPM), Serdang 43400, Selangor, Malaysia.

出版信息

Polymers (Basel). 2022 Apr 18;14(8):1630. doi: 10.3390/polym14081630.

Abstract

Dried hybrid fillers comprised of silica/CNF were successfully synthesized in ethanol/water mixed solvents at room temperature without the usage of any precursor. The as-prepared fillers were incorporated with polypropylene (PP) as a polymer matrix through a twin-screw extruder. From surface morphology analysis, the agglomeration of the silica/CNF hybrid fillers was prevented in the PP matrix and they exhibited moderate transparency, around 17.9% and 44.6% T at 660 nm. Further, the chemical structures of the polymer composites were identified by Fourier transform infrared (FT-IR) analysis. According to thermogravimetric analysis (TGA), the insertion of silica as a co-filler to the PP matrix resulted in an increase in its degradation onset temperature and also thermal stability. In addition, the mechanical properties of the PP composites also increased after the blending process with the hybrid fillers. Overall, sample PP-SS/CNF exhibited the highest tensile strength, which was 36.8 MPa, or around 73.55% compared to the pristine PP. The improvements in tensile strength were attributed to good dispersion and enhanced efficiency of the stress transfer mechanism between the silica and the cellulose within the PP matrix. However, elongation of the sample was reduced sharply due to the stiffening effect of the filler.

摘要

在乙醇/水混合溶剂中于室温下成功合成了由二氧化硅/CNF组成的干燥混合填料,且未使用任何前驱体。通过双螺杆挤出机将所制备的填料与作为聚合物基体的聚丙烯(PP)结合。从表面形态分析来看,二氧化硅/CNF混合填料在PP基体中未发生团聚,并且在660nm处呈现出适度的透明度,透光率分别约为17.9%和44.6%。此外,通过傅里叶变换红外(FT - IR)分析确定了聚合物复合材料的化学结构。根据热重分析(TGA),向PP基体中引入二氧化硅作为共填料导致其降解起始温度升高,热稳定性也提高。此外,PP复合材料在与混合填料共混后其力学性能也有所提高。总体而言,样品PP - SS/CNF表现出最高的拉伸强度,为36.8MPa,相较于原始PP约提高了73.55%。拉伸强度的提高归因于二氧化硅与纤维素在PP基体之间良好的分散性以及应力传递机制效率的提高。然而,由于填料的增强作用,样品的伸长率急剧降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5acd/9028520/87c720c348d7/polymers-14-01630-g001.jpg

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