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功能化核壳结构对纳米复合材料热力学及形状记忆性能的影响。

Influence of functionalized core-shell structure on the thermodynamic and shape memory properties of nanocomposites.

作者信息

Liu Jingbiao, Min Benzhi, Wang Zhenqing, Teng Jianxin, Sun Xiaoyu, Li Shaofan, Li Shuzhou

机构信息

College of Aerospace and Civil Engineering, Harbin Engineering University, Harbin, P. R. China.

Department of Civil and Environmental Engineering, University of California, Berkeley, CA 94720, USA.

出版信息

Nanoscale. 2020 Feb 7;12(5):3205-3219. doi: 10.1039/c9nr09029k. Epub 2020 Jan 22.

Abstract

Filler/matrix interfacial cohesion exerts a straightforward effect on stress transfer at the interface in composite structures, thereby significantly affecting their integrated mechanical properties. Thus, controlling the interface interaction of polymers/fillers is essential for the fabrication of high-performance polymer composites. In this work, a functionalized core-shell structured hybrid was prepared via charge attraction and applied as a novel filler in the trans-1,4-polyisoprene matrix to improve the interfacial interaction of the filler/matrix. A series of tests on the micro- and macroscale was performed to investigate its thermal, mechanical and shape memory performances. The obtained results show that while guaranteeing the shape memory properties of the composites, the utilization of the core-shell structured hybrid not only improved the heat resistant performance, but also contributed to better mechanical properties. This provides solid evidence for the potential of the innovative method presented herein, which may shed some light on the improvement of the interface design strategy and the development of composites with high performances.

摘要

填料/基体界面结合力对复合结构中界面处的应力传递有着直接影响,从而显著影响其整体力学性能。因此,控制聚合物/填料的界面相互作用对于制备高性能聚合物复合材料至关重要。在本工作中,通过电荷吸引制备了一种功能化核壳结构杂化物,并将其作为新型填料应用于反式-1,4-聚异戊二烯基体中,以改善填料/基体的界面相互作用。进行了一系列微观和宏观测试,以研究其热性能、力学性能和形状记忆性能。所得结果表明,在保证复合材料形状记忆性能的同时,核壳结构杂化物的使用不仅提高了耐热性能,还有助于获得更好的力学性能。这为本文提出的创新方法的潜力提供了确凿证据,该方法可能为改进界面设计策略和开发高性能复合材料提供一些思路。

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