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通过添加石墨烯纳米片增强航空航天级苯并恶嗪树脂

Enhancing an Aerospace Grade Benzoxazine Resin by Means of Graphene Nanoplatelets Addition.

作者信息

García-Martínez Vanessa, Gude Maria R, Calvo Silvia, Ureña Alejandro

机构信息

FIDAMC, Foundation for the Research, Development and Application of Composite Materials, Avda. Rita Levi-Montalcini 29, Getafe, 28906 Madrid, Spain.

Department of Applied Mathematics, Materials Science and Engineering and Electronics Technology, Universidad Rey Juan Carlos, Móstoles, 28933 Madrid, Spain.

出版信息

Polymers (Basel). 2021 Jul 31;13(15):2544. doi: 10.3390/polym13152544.

Abstract

Two different contents of graphene nanoplatelets (GNPs: 0.5 and 2 wt.%) were introduced into benzoxazine resin. The main objective of this work is to obtain a polymeric nanocomposite with multifunctional properties as high electrical and thermal conductivity, maintaining or improving its mechanical performance. The quality of the dispersion, performed with a three-roll calender, was studied. Afterward, a complete characterization of the nanocomposites was carried out in order to analyse the benefits of neat resin. The main features of the nanocomposites such as the mechanical and thermo-mechanical properties, their electrical and thermal conductivity and the behaviour under hygrothermal aging, were evaluated. Results allowed us to confirm that benzoxazine/GNPs composites exhibited an increase in the tensile strength of polymeric matrix which was accompanied by a rise in elongation at break. The electrical and thermal conductivities exhibited a remarkable increment with the addition of 2 wt.% of GNPs (six orders of magnitude and 49% respectively). Finally, the barrier properties of benzoxazine resin were also favoured with the presence of GNPs because the maximum water absorbed in a hot-water environment decreased from 2.52% to 2.14% when 0.5 wt.% of graphene nanoplatelets was added.

摘要

将两种不同含量的石墨烯纳米片(GNPs:0.5重量%和2重量%)引入苯并恶嗪树脂中。这项工作的主要目标是获得一种具有多功能特性(如高电导率和热导率)的聚合物纳米复合材料,同时保持或改善其机械性能。研究了用三辊压延机进行的分散质量。之后,对纳米复合材料进行了全面表征,以分析纯树脂的优点。评估了纳米复合材料的主要特性,如机械和热机械性能、电导率和热导率以及湿热老化下的行为。结果证实,苯并恶嗪/GNPs复合材料的聚合物基体拉伸强度有所提高,同时断裂伸长率也有所增加。添加2重量%的GNPs后,电导率和热导率显著提高(分别提高了六个数量级和49%)。最后,GNPs的存在也有利于提高苯并恶嗪树脂的阻隔性能,因为当添加0.5重量%的石墨烯纳米片时,在热水环境中吸收的最大水量从2.52%降至2.14%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce23/8346994/bc7c4bd696a5/polymers-13-02544-g001.jpg

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