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Publishing Language: Chinese | Open Access

Investigation on the aging mechanism of HTPB propellant in SRM long-term storage

Yu GUO1,2,3Zhibin SHEN1,2( )Haiyang LI1,2Xuan ZHANG3Zhijie LI3
College of Aerospace Science and Engineering, National University of Defense Technology, Changsha 410073, China
Hunan Key Laboratory of Intelligent Planning and Simulation for Aerospace Missions, Changsha 410073, China
The 41st Institute of the Sixth Academy of CASIC, Huhhot 010010, China
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Abstract

In order to reveal the aging mechanism of solid propellant grain during the long-term storage, a HTPB (hydroxyl-terminated polybutadiene) propellant rocket motor which was moulded by casting and stored naturally for 19 years was dissected. Samples were taken along the radial position of the propellant grains, and were tested and analyzed by means of SEM (scanning electron microscope), EDX (energy dispersive X-ray spectrometer), infrared absorption spectroscopy and cross-linking density. Results show that the aging degree of propellant is not the same at different positions of grain. The closer the position is to the non-metallic case, the more serious the aging degree of propellant is. Further analysis shows that, in addition to the effects of C=C double bond oxidation chain breaking and condensation of -OH on propellant aging, Al3+ ions produced by the oxidation of Al powder catalyzes the addition reaction of HTPB′s C=C double bond with Cl2 or water to form C=Cl double bond and secondary alcohol, and the uneven migration and distribution of aluminum ions will cause the uneven aging of grain. The research results are of great significance to the improvement of propellant aging performance and the research of anti-aging measures.

CLC number: V435 Document code: A Article ID: 1001-2486(2023)01-095-07

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Journal of National University of Defense Technology
Pages 95-101

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Cite this article:
GUO Y, SHEN Z, LI H, et al. Investigation on the aging mechanism of HTPB propellant in SRM long-term storage. Journal of National University of Defense Technology, 2023, 45(1): 95-101. https://doi.org/10.11887/j.cn.202301010

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Received: 02 December 2020
Published: 28 February 2023
© 2023 Journal of National University of Defense Technology

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).