Suppr超能文献

研究硝酸处理对回收碳纤维性能的影响。

Investigating the Effects of Nitric Acid Treatments on the Properties of Recycled Carbon Fiber.

作者信息

Kim Gyungha, Lee Hyunkyung, Kim Minsu, Kim Dae Up

机构信息

Carbon & Light Materials Application Group, Korea Institute of Industrial Technology, 222 Palbok-ro, Deokjin-gu, Jeonju 54853, Republic of Korea.

出版信息

Polymers (Basel). 2023 Feb 7;15(4):824. doi: 10.3390/polym15040824.

Abstract

In this study, the chemical state change of recycled carbon fiber (rCF) surfaces and the mechanism of the oxygen functional groups according to nitric acid treatment at various times and temperatures were investigated to upcycle the carbon fiber recovered from used carbon composite. When treated with nitric acid at 25 °C, the carbon fiber surface demonstrated the same tensile properties as untreated carbon fiber (CF) for up to 5 h, and the oxygen functional group and polar surface energy of C-O (hydroxyl group) and C=O (carbonyl group) increased slightly compared to the untreated CF up to 5 h. On the other hand, at 100 °C, the tensile properties slightly decreased compared to untreated CF up to 5 h, and the amount of C-O and C=O decreased and the amount of O=C-O (lactone group) started to increase until 1 h. After 1 h, the amount of C-O and C=O decreased significantly, and the amount of O=C-O increased rapidly. At 5 h, the amount of oxygen functional groups increased by 92%, and the polar surface energy increased by 200% compared to desized CF. It was determined that the interfacial bonding force increased the most because the oxygen functional group, O=C-O, increased greatly at 100 °C and 5 h.

摘要

在本研究中,为了对从废旧碳复合材料中回收的碳纤维进行升级再利用,研究了再生碳纤维(rCF)表面的化学状态变化以及在不同时间和温度下硝酸处理后氧官能团的形成机制。在25℃下用硝酸处理时,碳纤维表面在长达5小时内表现出与未处理碳纤维(CF)相同的拉伸性能,并且与未处理CF相比,在长达5小时内,C-O(羟基)和C=O(羰基)的氧官能团和极性表面能略有增加。另一方面,在100℃下,与未处理CF相比,长达5小时内拉伸性能略有下降,并且C-O和C=O的量减少,而O=C-O(内酯基)的量在1小时前开始增加。1小时后,C-O和C=O的量显著减少,而O=C-O的量迅速增加。在5小时时,与脱浆CF相比,氧官能团的量增加了92%,极性表面能增加了200%。结果表明,由于在100℃和5小时时氧官能团O=C-O大幅增加,界面结合力增加最为显著。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/add6/9962928/ec7c97ecb9ca/polymers-15-00824-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验