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热塑性弹性体和粉煤灰对长玻璃纤维增强聚丙烯复合材料性能的影响。

The Effect of Thermoplastic Elastomer and Fly Ash on the Properties of Polypropylene Composites with Long Glass Fibers.

作者信息

Teodorescu George Mihail, Vuluga Zina, Ion Rodica Mariana, Fistoș Toma, Ioniță Andreea, Slămnoiu-Teodorescu Sofia, Paceagiu Jenica, Nicolae Cristian Andi, Gabor Augusta Raluca, Ghiurea Marius

机构信息

National Institute for Research & Development in Chemistry and Petrochemistry-ICECHIM, Research Group 12-Polymeric Composites and Nanocomposites, 202 Splaiul Independentei, 060021 Bucharest, Romania.

Doctoral School of Materials Engineering Department, "Valahia" University of Targoviste, 35 Lt. Stancu Ion, 130105 Targoviste, Romania.

出版信息

Polymers (Basel). 2024 Apr 29;16(9):1238. doi: 10.3390/polym16091238.

Abstract

A cost-effective solution to the problems that the automotive industry is facing nowadays regarding regulations on emissions and fuel efficiency is to achieve weight reduction of automobile parts. Glass fiber-reinforced polymers are regularly used to manufacture various components, and some parts may also contain thermoplastic elastomers for toughness improvement. This work aimed to investigate the effect of styrene-(ethylene-co-butylene)-styrene triblock copolymer (E) and treated fly ash (C) on the morphological, thermal, and mechanical properties of long glass fiber (G)-reinforced polypropylene (PP). Results showed that the composites obtained through melt processing methods presented similar thermal stability and improved (nano)mechanical properties compared to 25-30 wt.% G-reinforced PP composites (PP-25G/PP-30G). Specifically, the impact strength and surface hardness were greatly improved. The addition of 20 wt.% E led to a 25-39% increase in impact strength and surface elasticity, while the addition of 6.5 wt.% C led to a 16% increase in surface hardness. The composite based on 25 wt.% G, 6.5 wt.% C, and 20 wt.% E presented the best-balanced properties (8-17% increase in impact strength, 38-41% increase in axial strain, and 35% increase in surface hardness) compared with PP-30G/PP-25G. Structural and morphological analysis confirmed the presence of a strong interaction between the components that make the composites. Based on these results, the PP-G-E-C composites could be presented as a viable material for automotive applications.

摘要

汽车行业目前在排放和燃油效率法规方面面临诸多问题,一种经济高效的解决方案是减轻汽车零部件的重量。玻璃纤维增强聚合物常用于制造各种部件,一些部件还可能含有热塑性弹性体以提高韧性。本工作旨在研究苯乙烯 -(乙烯 - 共 - 丁烯)- 苯乙烯三嵌段共聚物(E)和处理后的粉煤灰(C)对长玻璃纤维(G)增强聚丙烯(PP)的形态、热性能和力学性能的影响。结果表明,通过熔融加工方法获得的复合材料与25 - 30 wt.% G增强PP复合材料(PP - 25G/PP - 30G)相比,具有相似的热稳定性和改善的(纳米)力学性能。具体而言,冲击强度和表面硬度得到了极大提高。添加20 wt.% E导致冲击强度和表面弹性提高25 - 39%,而添加6.5 wt.% C导致表面硬度提高16%。与PP - 30G/PP - 25G相比,基于25 wt.% G、6.5 wt.% C和20 wt.% E的复合材料呈现出最佳的综合性能(冲击强度提高8 - 17%,轴向应变提高38 - 41%,表面硬度提高35%)。结构和形态分析证实了构成复合材料的各组分之间存在强相互作用。基于这些结果,PP - G - E - C复合材料可被视为一种适用于汽车应用的可行材料。

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