Author:
Wang Qizhou,Wang Guang,Wang Zhejun,Qiang Hongfu,Wang Xueren,Li Shiqi,Zhu Zhaojun
Abstract
AbstractAiming at the shortcomings of the current research on the mechanical properties of solid propellants under complex stress conditions, an effective cross-shaped test piece configuration and variable-scale biaxial tensile test method are designed in this paper, and the meso-simulation model of propellant is constructed by Micro-CT test and random filling algorithm. Then, based on the Hook-Jeeves method and the cohesive force model, the mechanical performance parameters of each mesoscopic component were obtained, and finally the damage evolution process of the propellant was numerically simulated. The results show that the stress–strain curve of the propellant under biaxial loading is similar to that of uniaxial stretching, and has obvious rate dependence and stress state dependence. The mechanical properties of the propellant under biaxial tensile loading are significantly lower than those in uniaxial stretching, and the maximum elongation is only 45–85% of that in uniaxial stretching. The fracture process of propellant can be divided into initial linear stage, damage evolution stage and fracture stage. The dewetting phenomenon generally occurs at the interface between the large-sized AP particles and the matrix. With the loading of the load, the pores formed by the dewetting and matrix tearing continue to converge into cracks and expand in the direction perpendicular to the resultant force, and finally fracture. The propellant dehumidifies more easily under high strain rate loading, but the degree of dewetting is lower when the same strain is reached.
Funder
National Natural Funds in China
Science project of Shaanxi Province
key scientific and technological project of henan province
Publisher
Springer Science and Business Media LLC
Reference43 articles.
1. Li, Z. Investigation of the Work Process of Solid Rocket Motor under Lateral Overload[D] (National University of Defense Technology, Changsha, 2005).
2. Gligorijević, N., Živković, S., Subotić, S., Rodić, V. & Gligorijević, I. Effect of cumulative damage on rocket motor service life[J]. J. Energ. Mater. 33(4), 229–259 (2015).
3. Chen, R. X. Design and Research of Solid Rocket Motor[M] (China Astronautic Publishing House, Beijing, 1991).
4. Chyuan, S. Nonlinear thermoviscoelastic analysis of Solid propellant grains subjected to temperature loading[J]. Finite Elem. Anal. Des. 38(7), 613–630 (2002).
5. Chyuan, S. Synamic analysis of solid propellant grains subjected to ignition pressuization loading[J]. J. Sound Vib. 268(3), 465–483 (2003).
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