共 20 条
- [1] MERZHANOV A G, ABRAMOV V G., Thermal explosion of explosives and propellants. a review [J], Propellants Explosives Pyrotechnics, 6, 5, pp. 130-148, (2010)
- [2] JIANG Y P, LIU H Y, XIE D B, Et al., Mechanical, thermal and fire performance of an inorganic-organic insulation material composed of hollow glass microspheres and phenolic resin[J], Journal of Colloid and Interface Science, 530, 21, pp. 163-170, (2018)
- [3] GENG H T, LIU J C, GUO A R, Et al., Fabrication of heat-resistant syntactic foams through binding hollow glass microspheres with phosphate adhesive, Materials & Design, 95, 7, pp. 32-38, (2016)
- [4] XU X, ZHANG Q Q, HAO M L, Et al., Double-negative index ceramic aerogels for thermal superinsulation[J], Science, 363, 5, pp. 723-727, (2019)
- [5] FANG H, ZHANG L S., Study on the thermal response characteristics of insulation materials to explosives under fast cook-off condition, Proceedings of OSEC First Weapons Engineering Conference, (2017)
- [6] LI L L, SHEN F, WANG S Q, Et al., Effect of external shell coating and coating layer on fast cook-off test of HAE charge, Chinese Journal of Explosives & Propellants, 42, 2, pp. 202-206, (2019)
- [7] PAN Y, LI D H, YANG R J, Et al., Performance of thermal protection coating of fuze and its packaging materials in cook-off test, Acta Armamentarii, 42, 6, pp. 1169-1177, (2021)
- [8] DU L X, JIN S H, SHU Q H, Et al., The investigation of NTO/ HMX-based plastic-bonded explosives and its safety performance [J], Defence Technology, 18, 1, pp. 72-80, (2022)
- [9] REN Y., Investigation on explosive thermal character under high temperature, (2005)
- [10] DUAN Y, YANG Z, GE W C, Et al., Explosive thermal analysis monitoring system based on virtual instrument [J], Journal of Beijing Institute of Technology, 30, pp. 218-224, (2021)