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通过吉拉德试剂提高腰果酚环氧树脂/粘土基纳米复合材料的热性能和机械性能。

Enhanced Thermal and Mechanical Properties of Cardanol Epoxy/Clay-Based Nanocomposite through Girard's Reagent.

作者信息

Xu Ji, Jia Lingxiao, Lan Qixin, Wu Daheng

机构信息

Key Laboratory of Advanced Marine Materials, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China.

Department of Ocean Engineering and Technology, College of Ocean, Zhejiang University, Hangzhou 310058, China.

出版信息

Polymers (Basel). 2024 May 29;16(11):1528. doi: 10.3390/polym16111528.

Abstract

The green and environmentally friendly cardanol epoxy resin has a bright application prospect, but its insufficient thermal/mechanical properties seriously hinder its application. Adding nanoclay to polymer matrix is an effective method to enhance the thermal/mechanical properties of material, but the dispersion and compatibility of nanoclay in epoxy resin remain to be solved. In this work, active Girard's reagent clay (PG-clay) and non-active Girard's reagent clay (NG-clay) were prepared by using acethydrazide trimethylammonium chloride (Girard's reagent) as the modifier, and cardanol epoxy resin/G-clay nanocomposites were synthesized by the "clay slurry composite method". The results showed that both PG-clay and NG-clay were dispersed in the epoxy matrix in the form of random exfoliation/intercalation, which effectively improved the thermal/mechanical properties of the composites. Tg of the cardanol epoxy resin has raised from 19.8 °C to 38.1 °C (4 wt.% PG-clay). When the mass fraction of clay is 4%, the tensile strength of the non-reactive NG-clay increases by 128%, and the elongation at break also increases by 101%. Simultaneously, the active PG-clay can participate in the curing reaction of epoxy resin due to the amino group, forming a chemical bond between the clay layer and the resin matrix and establishing a strong interfacial force. The tensile strength of the composite is increased by 970%, and the elongation at break is also increased by 428%. This research demonstrates that the cardanol epoxy resin/G-clay nanocomposite stands as a highly promising candidate for bio-based epoxy resin materials.

摘要

绿色环保的腰果酚环氧树脂具有广阔的应用前景,但其热/机械性能不足严重阻碍了其应用。向聚合物基体中添加纳米黏土是提高材料热/机械性能的有效方法,但纳米黏土在环氧树脂中的分散性和相容性仍有待解决。在本工作中,以乙酰肼三甲基氯化铵(吉拉德试剂)为改性剂制备了活性吉拉德试剂黏土(PG-黏土)和非活性吉拉德试剂黏土(NG-黏土),并通过“黏土浆料复合方法”合成了腰果酚环氧树脂/G-黏土纳米复合材料。结果表明,PG-黏土和NG-黏土均以随机剥离/插层的形式分散在环氧基体中,有效改善了复合材料的热/机械性能。腰果酚环氧树脂的玻璃化转变温度从19.8℃提高到了38.1℃(4 wt.% PG-黏土)。当黏土质量分数为4%时,非活性NG-黏土的拉伸强度提高了128%,断裂伸长率也提高了101%。同时,活性PG-黏土由于氨基可参与环氧树脂的固化反应,在黏土层与树脂基体之间形成化学键,建立起强大的界面作用力。复合材料的拉伸强度提高了970%,断裂伸长率也提高了428%。本研究表明,腰果酚环氧树脂/G-黏土纳米复合材料是一种极具潜力的生物基环氧树脂材料。

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