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通过茶多酚辅助界面改性增强炭黑/氢化丁腈橡胶复合材料的力学性能和耐油性

Enhancing Mechanical Properties and Oil Resistance of Carbon Black/Hydrogenated Nitrile Butadiene Rubber Composites via Tea Polyphenol-Assisted Interfacial Modification.

作者信息

Yin Hang, Nie Jingkai, Wang Yifan, Zhang Shicheng, Sun Ming, Tian Yi, Fan Chao, He Qiang

机构信息

Institute of New Electrical Materials, China Electric Power Research Institute, Beijing 100192, China.

State Key Laboratory of Advanced Power Transmission Technology, Beijing 102209, China.

出版信息

ACS Omega. 2025 Aug 25;10(35):39649-39657. doi: 10.1021/acsomega.5c02979. eCollection 2025 Sep 9.

Abstract

Rubber vibration dampers in transformers require high oil resistance to ensure long-term stability in power facilities. Hydrogenated nitrile butadiene rubber (HNBR), characterized by its strong polarity and superior oil resistance, serves as an ideal matrix material. However, its high polarity often leads to poor carbon black (CB) dispersion and weak interfacial interactions with conventional oil-resistant additives, causing additive migration and reduced oil resistance. To address these challenges, tea polyphenol (TP), a polar small-molecule compound, was introduced as a multifunctional modifier and oil-resistant additive to improve the performance of CB/HNBR composites. The study demonstrated that TP acts as an interfacial bridge, where hydrogen bonding between the phenolic hydroxyl groups in TP and the nitrile groups in HNBR, along with π-π interactions between TP and CB, significantly enhances the CB-HNBR interface and promotes uniform CB dispersion. At an optimal TP content of 2 ppm rubber (phr), the CB/HNBR composites exhibited remarkable improvements in mechanical properties, with the 300% modulus, tensile strength, and tear strength increasing by 8.9, 9.4, and 18.5%, respectively, compared to the CB/HNBR composite without TP. Moreover, the formation of a polar network between TP and HNBR further enhanced the oil resistance of the CB/HNBR composites. Oil resistance tests revealed that the volume and mass change rates of the CB/HNBR composite with 2 phr TP decreased by 48.1 and 57.1%, respectively, indicating that TP effectively mitigates additive migration while reinforcing the oil resistance of the composites.

摘要

变压器中的橡胶减震器需要具有高耐油性,以确保电力设施的长期稳定性。氢化丁腈橡胶(HNBR)具有强极性和优异的耐油性,是一种理想的基体材料。然而,其高极性往往导致炭黑(CB)分散性差,与传统耐油添加剂的界面相互作用较弱,从而引起添加剂迁移并降低耐油性。为应对这些挑战,引入了极性小分子化合物茶多酚(TP)作为多功能改性剂和耐油添加剂,以改善CB/HNBR复合材料的性能。研究表明,TP充当界面桥,TP中的酚羟基与HNBR中的腈基之间的氢键,以及TP与CB之间的π-π相互作用,显著增强了CB-HNBR界面并促进了CB的均匀分散。当TP的最佳含量为2份橡胶(phr)时,CB/HNBR复合材料的力学性能有显著改善,与不含TP的CB/HNBR复合材料相比,300%模量、拉伸强度和撕裂强度分别提高了8.9%、9.4%和18.5%。此外,TP与HNBR之间形成的极性网络进一步增强了CB/HNBR复合材料的耐油性。耐油测试表明,含2 phr TP的CB/HNBR复合材料的体积和质量变化率分别降低了48.1%和57.1%,这表明TP有效地减轻了添加剂迁移,同时增强了复合材料的耐油性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/313f/12423887/90ba5bbe7861/ao5c02979_0001.jpg

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