Preparation and Properties of Fuel-absorbing Self-sealing Composites by Blending Method
CHEN Guojing1,2, WANG Yubo1, DENG Shunli1, LIN Huan2, WANG Guojun1, LI Wanli2,*
1 Key Laboratory of Superlight Material and Surface Technology of Ministry of Education, College of Material Science and Chemical Engineering, Harbin Engineering University, Harbin 150001, China 2 Institute of Military New Energy Technology, Institute of Systems Engineering, Academy of Military Sciences, Beijing 102300, China
Abstract: The fuel leakage accident caused by the destruction of fuel storage containers cannot be ignored. In this work, the high oil-absorption resin was added into the polyurethane matrix by blending modification, and the fuel-absorbing self-sealing composites was prepared to be used as a protective coating for fuel storage containers. The effect of particle size of high oil-absorption resin on its own oil-absorption performance and mechanical properties of composites was explored. The self-sealing mechanism of the composite material was analyzed and its self-sealing effect was also observed. Finally, the effects of high oil-absorption resin content on the roughness, adhesion, dynamic mechanical properties and fuel resistance of composites were discussed. The results showed that the smaller the particle size of the high oil-absorption resin, the faster the oil-absorption rate, and the better the mechanical properties of the composite. The addition of high oil-absorption resin increased the roughness of the composite material, and slightly reduced the adhesion and damping properties. The prepared fuel-absorbing self-sealing composites can seal the gap with a diameter of 1.5 mm in only 5 min, which has potential research value in the field of leakage prevention of fuel storage containers.
陈国晶, 王宇博, 邓顺利, 林欢, 王国军, 李万利. 共混法制备吸燃油自密封复合材料及其性能研究[J]. 材料导报, 2023, 37(18): 22020050-6.
CHEN Guojing, WANG Yubo, DENG Shunli, LIN Huan, WANG Guojun, LI Wanli. Preparation and Properties of Fuel-absorbing Self-sealing Composites by Blending Method. Materials Reports, 2023, 37(18): 22020050-6.
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