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作 者:Liyun Lin Lipeng Sang Yiheng Li Jiawei Yan Panpan Peng Qilong Yan Bowen Tao Xiang Guo
机构地区:[1]National Key Laboratory of Aerospace Chemical Power,Xiangyang,441003,China [2]Hubei Institute of Aerospace Chemotechnology,Xiangyang,441003,China [3]Northwestern Polytechnical University,Xi'an,710072,China
出 处:《Defence Technology(防务技术)》2025年第3期109-118,共10页Defence Technology
基 金:National Natural Science Foundation of China(Grant No.22175059)to provide fund for conducting experiments.
摘 要:The migration of nitroglycerin(NG)has always been the critical issue that harmfully impacts the structural integrity and operational reliability of the solid rocket motor,which is mainly composed by Nitrate Ester Plasticized Polyether(NEPE)propellant/Hydroxyl-terminated Polybutadiene(HTPB)liner/Ethylene Propylene Diene Monomer(EPDM)insulation bonding system.This paper proposes an innovative surface modification method attempting to modify the EPDM insulation layer coated with reduced graphene oxide(RGO),which exhibits ability to weaken the NG absorption by EPDM insulation layer,blocking the pathway of NG migration into EPDM insulation materials.The microstructure of RGO-coated layer was analyzed and the formation mechanism was investigated.The RGO-coated layer is well bonded to the HTPB liner,and its anti-migration performance to NG at different temperatures has been evaluated.Comparing with blank samples under the same storage conditions,the RGO-coated layers can reduce the diffusion coefficient of NG by up to 87.3%and increase the diffusion activation energy of NG by 14.8 kJ,mol1.This research provides a new strategy to effectively inhibit NG migration in NEPE propellant/HTPB liner/EPDM insulation bonding system.
关 键 词:Impermeability of graphene Swelling effect of toluene Penetrating effect of RGO Anti-migration performance to NG
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