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填料协同作用下高强度及优异相容性氟硅橡胶复合材料的制备

Preparation of High-Strength and Excellent Compatibility Fluorine/Silicone Rubber Composites under the Synergistic Effect of Fillers.

作者信息

Zhao RongPeng, Yin ZhiGang, Zou Wei, Yang Hu, Yan Jie, Zheng WenJiang, Li Hui

机构信息

School of Chemical Engineering, Sichuan University of Science & Engineering, Zigong643000, China.

Organic Fluorine Material Key Laboratory of Sichuan Province, Zigong643000, China.

出版信息

ACS Omega. 2023 Jan 17;8(4):3905-3916. doi: 10.1021/acsomega.2c06489. eCollection 2023 Jan 31.

Abstract

Fluorine/silicone composite rubber is widely used as a sealing material in aerospace, missile, automotive, petroleum, and other industries, but the traditional process does not use synergistic fillers to strengthen the composite system. In this research, fumed SiO and black caron (N990) were used as synergistic fillers, fluorine/silicone composite rubber was prepared by mechanical mixing process, and three different fluorine rubber systems were used to find the best composite material. The mechanical properties, thermal properties, aging properties, moderate strength properties, and microstructure of the composites were evaluated. Studies have shown that mixing the two can produce a certain interface interaction and effectively improve the compatibility. The physical properties of the material tended to decrease during the increase in the added amount of silicone rubber (MVQ). The maximum tensile strength of the hybrid material can reach 15 MPa. The optimal mixing ratio is fluororubber/silicone rubber (FKM/MVQ) = 9/1. At this time, the mechanical properties of the composite material are in the best state, and SiO and black caron (N990) have a reinforcing effect, which can effectively improve the mechanical properties. After the composite was kept at 200 °C for 48 h, the tensile strength and elongation of the best sample A1 were 99.5 and 97.0%, respectively, showing excellent anti-aging properties. This work provides a method to fabricate high-strength fluorine/silicone composites using synergistic fillers that may be used in heat-medium-sealed environments.

摘要

氟硅复合橡胶在航空航天、导弹、汽车、石油等行业中广泛用作密封材料,但传统工艺未使用协同填料来增强复合体系。在本研究中,采用气相二氧化硅和黑炭(N990)作为协同填料,通过机械共混工艺制备氟硅复合橡胶,并使用三种不同的氟橡胶体系来寻找最佳复合材料。对复合材料的力学性能、热性能、老化性能、适度强度性能和微观结构进行了评估。研究表明,将两者混合可产生一定的界面相互作用并有效提高相容性。随着硅橡胶(MVQ)添加量的增加,材料的物理性能趋于下降。混合材料的最大拉伸强度可达15MPa。最佳混合比例为氟橡胶/硅橡胶(FKM/MVQ)=9/1。此时,复合材料的力学性能处于最佳状态,气相二氧化硅和黑炭(N990)具有增强作用,可有效提高力学性能。将复合材料在200℃下保持48h后,最佳样品A1的拉伸强度和伸长率分别为99.5%和97.0%,显示出优异的抗老化性能。这项工作提供了一种使用协同填料制备高强度氟硅复合材料的方法,该复合材料可用于热介质密封环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c4a/9893473/cbccbf29910d/ao2c06489_0001.jpg

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