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基于热处理的可再加工新型含硫环氧树脂的开发

Development of reprocessable novel sulfur-containing epoxy based on thermal treatment.

作者信息

Li Mengyu, Liu Ning, Chen Jinhang, Shi Kai, Li Qiaoling

机构信息

Department of Chemistry and School of Science, North University of China Taiyuan 030051 People's Republic of China

出版信息

RSC Adv. 2018 Aug 8;8(50):28386-28394. doi: 10.1039/c8ra04151b. eCollection 2018 Aug 7.

Abstract

Inspired by the Diels-Alder reaction (DA reaction), the product of the reaction of 2-thiophenecarboxaldehyde (TCD) with epichlorohydrin (ECH) was combined with 1,4-anthraquinone to form a DA structure (a sulfur-containing self-healing epoxy resin (EP-DA) containing a large amount of π-electrons) was synthesized. The chemical structure, thermal properties, thermo-reversibility and tribological properties of EP-DA were studied by FTIR, DSC, gel-sol conversion and MRH-3G, respectively. The results indicated that the as-prepared epoxy composite network, which contains the thermally reversible D-A bond, enabled the epoxy resin to undergo self-repair. Moreover, the waste epoxy resin can be recycled and reused. The friction and wear of the epoxy during actual use were simulated. Macroscopic qualitative observation and quantitative measurement of shearing and peeling recovery were combined to examine the repair behavior and reprocessing ability of EP-DA, confirming that this material has good performance of self-repair and reprocessability, with the highest repair efficiency of up to 83.4%. Moreover, the introduced sulfur-containing diene body greatly improved the lubricating performance of the material, and the treatment time of waste reprocessing had a great influence on the content of the sulfur-containing epoxy monomer in the final EP-DA film. It was often possible to determine the degree of recovery of frictional properties. Inspired by the D-A reaction, a self-assembled large molecule that shares a large number of π-electrons is constructed.

摘要

受狄尔斯-阿尔德反应(DA反应)的启发,将2-噻吩甲醛(TCD)与环氧氯丙烷(ECH)反应的产物与1,4-蒽醌结合,形成DA结构(一种含有大量π电子的含硫自修复环氧树脂(EP-DA))并进行了合成。分别通过傅里叶变换红外光谱(FTIR)、差示扫描量热法(DSC)、凝胶-溶胶转化和MRH-3G研究了EP-DA的化学结构、热性能、热可逆性和摩擦学性能。结果表明,所制备的含有热可逆D-A键的环氧复合网络使环氧树脂能够进行自修复。此外,废弃的环氧树脂可以回收再利用。模拟了环氧树脂在实际使用过程中的摩擦磨损情况。结合宏观定性观察和剪切与剥离恢复的定量测量来考察EP-DA的修复行为和再加工能力,证实该材料具有良好的自修复和再加工性能,最高修复效率可达83.4%。此外,引入的含硫二烯体极大地提高了材料的润滑性能,废弃再加工的处理时间对最终EP-DA薄膜中含硫环氧单体的含量有很大影响。通常可以确定摩擦性能的恢复程度。受D-A反应的启发,构建了一种共享大量π电子的自组装大分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8af8/9084304/7e7f3f5da943/c8ra04151b-f1.jpg

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