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氢化苯乙烯-丁二烯嵌段共聚物增强聚丙烯泡沫的细胞结构与韧性

The Cellular Structure and Toughness of Hydrogenated Styrene-Butadiene Block Copolymer Reinforced Polypropylene Foams.

作者信息

Guo Wei, Zheng Zicheng, Li Wei, Li Hao, Zeng Fankun, Mao Huajie

机构信息

Hubei Key Laboratory of Advanced Technology for Automotive Components, Wuhan University of Technology, Wuhan 430070, China.

Hubei Collaborative Innovation Centre for Automotive Components Technology, Wuhan University of Technology, Wuhan 430070, China.

出版信息

Polymers (Basel). 2023 Mar 17;15(6):1503. doi: 10.3390/polym15061503.

Abstract

Polypropylene nanocomposites containing varying amounts of Styrene-ethylene-butadiene-styrene block copolymer (SEBS) were prepared through the supercritical nitrogen microcellular injection-molding process. Maleic anhydride (MAH)-grafted polypropylene (PP-g-MAH) copolymers were used as compatibilizers. The influence of SEBS content on the cell structure and toughness of the SEBS/PP composites was investigated. Upon the addition of SEBS, the differential scanning calorimeter tests revealed that the grain size of the composites decreased, and their toughness increased. The results of the rheological behavior tests showed that the melt viscosity of the composite increased, playing a role in enhancing the cell structure. With the addition of 20 wt% SEBS, the cell diameter decreased from 157 to 66.7 μm, leading to an improvement in the mechanical properties. Compared to pure PP material, the impact toughness of the composites rose by 410% with 20 wt% of SEBS. Microstructure images of the impact section displayed evident plastic deformation, effectively absorbing energy and improving the material's toughness. Furthermore, the composites exhibited a significant increase in toughness in the tensile test, with the foamed material's elongation at break being 960% higher than that of pure PP foamed material when the SEBS content was 20%.

摘要

通过超临界氮气微孔注射成型工艺制备了含有不同含量苯乙烯-乙烯-丁二烯-苯乙烯嵌段共聚物(SEBS)的聚丙烯纳米复合材料。使用马来酸酐(MAH)接枝聚丙烯(PP-g-MAH)共聚物作为增容剂。研究了SEBS含量对SEBS/PP复合材料泡孔结构和韧性的影响。添加SEBS后,差示扫描量热仪测试表明复合材料的晶粒尺寸减小,韧性增加。流变行为测试结果表明复合材料的熔体粘度增加,对增强泡孔结构起到了作用。添加20 wt% SEBS时,泡孔直径从157μm减小到66.7μm,从而使力学性能得到改善。与纯PP材料相比,添加20 wt% SEBS时复合材料的冲击韧性提高了410%。冲击断面的微观结构图像显示出明显的塑性变形,有效吸收能量并提高了材料的韧性。此外,复合材料在拉伸试验中韧性显著增加,当SEBS含量为20%时,发泡材料的断裂伸长率比纯PP发泡材料高960%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70e3/10056458/180b9e479485/polymers-15-01503-g001.jpg

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