首页> 外文期刊>Journal of Applied Polymer Science >Investigation of the mechanical, thermal, and anticorrosion properties of epoxy nanocomposite coatings: Effect of synthetic hardener and nanoporous graphene
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Investigation of the mechanical, thermal, and anticorrosion properties of epoxy nanocomposite coatings: Effect of synthetic hardener and nanoporous graphene

机译:环氧纳米复合涂层的机械,热和防腐性能研究:合成硬化剂和纳米多孔石墨烯的影响

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In the present study, epoxy samples containing nanoporous graphene (NPG) were synthesized and analyzed in terms of mechanical, morphological, thermal, adhesion, and anticorrosion properties. To this end, the employed curing agents (hardeners) were synthesized and NPG content was varied from 0 to 1 wt %. By using a hardener with aliphatic side chains, the toughness of the nanocomposite was improved without a decrease in the modulus. Adding 1 wt % NPG increased the modulus of the nanocomposite by about 30%. The dynamic mechanical results showed an increment in the glass transition of the samples containing 1 wt % NPG. Field emission scanning electron microscopy images were used to observe the fracture surface of the nanocomposites. The thermogravimetric analysis analysis also confirmed that using synthetic hardener and NPG as the nanofiller enhanced the thermal resistance of the samples. The images of the protected metal panel surfaces and their coatings were used to study adhesion and anticorrosion properties. These results indicated that the hardener synthesized in this work along with NPG improved the mechanical, thermal, adhesion, and anticorrosion properties of the epoxy nanocomposites effectively. The specific characteristic of the synthetic hardener was its chemical structure including both aliphatic and cyclic polyamines as the side groups. (c) 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018, 135, 46201.
机译:在本研究中,在机械,形态学,热,粘附和防腐性方面合成并分析含有纳米多孔石墨烯(NPG)的环氧样品。为此,合成使用的固化剂(硬化剂),NPG含量从0〜1wt%变化。通过使用具有脂族侧链的硬化剂,改善了纳米复合材料的韧性而不会降低模量。加入1wt%NPG将纳米复合材料的模量增加约30%。动态力学结果显示含有1wt%NPG的样品的玻璃化转变中的增量。场发射扫描电子显微镜图像用于观察纳米复合材料的断裂表面。热重分析分析还证实,随着纳米填充物的使用,使用合成硬化剂和NPG增强了样品的热阻。保护金属板表面及其涂层的图像用于研究粘附和防腐性能。这些结果表明,在该工作中合成的硬化剂以及NPG有效地改善了环氧纳米复合材料的机械,热,粘附性和防腐性能。合成硬化剂的具体特征是其化学结构,包括脂族和环状多胺作为侧基。 (c)2018 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2018,135,46201。

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