Effect of internal phase particle size on properties of site mixed emulsion explosive at plateau environment

Author:

Xie S. D.,Cai X. Y.,Wu H. B.,Wang Q.,Guo Z. R.,Chen Z. Y.,Ma C. S.

Abstract

AbstractTo study the effect of internal particle size on the microstructure properties and thermal decomposition characteristics of site mixed emulsion explosive at different altitudes. Site mixed emulsion explosive was prepared with different shear rate. The particle size, viscosity, sensitized bubbles, detonation velocity and peak pressure of the emulsion explosive were tested after stored at different simulated altitudes. The thermal decomposition characteristics of emulsion matrix prepared at three different rotational speeds were measured by thermogravimetric analyzer and kinetic analysis was performed by non-isothermal model Kissinger–Akah–Sunose (KAS) method. The results show that with the increase in altitude, the internal phase size showed a trend of first increasing and then decreasing, and the number of sensitized bubbles within the emulsion explosive decreases. At an altitude of 0 m, the detonation velocity and peak overpressure of the emulsion explosive prepared by 1600 r min−1 increased 4.78% and 29.09%, respectively compared with 1200 r min−1, and at an altitude of 4500 m, the detonation velocity increased 11.87%, the peak overpressure increased 43.98%. The thermal decomposition activation energy of the emulsion matrix at 1600 r min−1 increased 13.14% compared to 1200 r min−1. It shows that in the production of site mixed emulsion explosive at high altitude, reducing the particle size of the internal phase of emulsion explosives in a certain range can effectively improve the performance of emulsion explosives.

Funder

Anhui province natural science foundation project

Publisher

Springer Science and Business Media LLC

Reference20 articles.

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2. Zhang, Y. The Law of the Instability Process of Emulsion Matrix Research (Beijing University of Science and Technology, 2020).

3. Wu, H. B. et al. Study on adaptability of emulsion explosive in plateau environment. Explos. Mater. 50(5), 34–38 (2021).

4. Gao, Y. G. et al. Experimental research on brisance of explosive in simulated high altitude environment. Initiat. Pyrotech. 5, 36–39 (2013).

5. Wu, P. Y. et al. Effect of phase particle size on the non-isothermal thermal decomposition characteristics of field mixed emulsion explosive. Chin. J. Explos. Propell. 45(2), 249–256 (2022).

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