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Recent advances in the synthesis and energetic properties of potassium-based potential green primary explosives被引量:1
《Defence Technology(防务技术)》2022年第11期1945-1959,共15页Qamar-un-Nisa Tariq Saira Manzoor Maher-un-Nisa Tariq Wen-Li Cao Jian-Guo Zhang 
the NSAF (U1830134);NSFC (22175025), for their generous financial support;supported by a project of State Key Laboratory of Explosion Science and Technology (Beijing Institute of Technology). The project number is YBKT21-02
Primary explosives are utilized as a reliable initiator for secondary explosives in an extensive range of military and civilian operations. Heavy-metal-based primary explosives are moderate performing, more sensitive,...
关键词:Green primary explosives Heterocyclic compounds SYNTHESIS Energetic properties 
Tuning the reactivity of Al-Ni by fine coating of halogen-containing energetic composites被引量:3
《Defence Technology(防务技术)》2022年第10期1810-1821,共12页Su-lan Yang Ke-juan Meng Wu-xi Xie Hong-qi Nie Qi-Long Yan 
supported by the Nation Natural Science Foundation of China(Grant No.51776176);the Fundamental Research Funds for the Central Universities,China(Grant No.G2017KY0301);partially funded by NSAF project(Grant No.2030202);sponsored by Innovation Foundation for Doctor Dissertation of Northwestern Polytechnical University(Grant No.CX2021048)。
In this paper,various core-shell structured Al—Ni@ECs composites have been prepared by a spray-drying technique.The involved ECs refer to the energetic composites(ECs)of ammonium perchlorate/nitrocellulose(AP/NC,NA)a...
关键词:Arrested high energy ball milling Intermetallic alloy Combustion performance Energetic composites Reactivity control 
Damage characteristics of YAG transparent ceramics under different loading conditions
《Defence Technology(防务技术)》2022年第8期1394-1404,共11页Kuo Bao Xian-feng Zhang Gui-ji Wang Jia-jie Deng Tao Chong Dan Han Bing-qiang Luo Meng-ting Tan 
This work is funded by the National Natural Science Foundation of China(No.11772159);the NSAF Joint Fund(No.U1730101);the Fundamental Research Funds for the Central Universities(No.30917011104).
YAG (Y_(3)Al_(5)O_(12)) transparent ceramics have attractive application prospects for transparent armor protection modules because of their excellent light transmittance and anti-ballistic capability. Understanding t...
关键词:YAG transparent Ceramics Damage characteristics Impact loading Shock compression Spall strength 
Experimental study on WFeNiMo high-entropy alloy projectile penetrating semi-infinite steel target被引量:4
《Defence Technology(防务技术)》2022年第8期1470-1482,共13页Hai-hua Chen Xian-feng Zhang Lan-hong Dai Chuang Liu Wei Xiong Meng-ting Tan 
This work is funded by the National Natural Science Foundation of China(No.11790292);the NSAF Joint Fund(No.U1730101).
The appearance of high-entropy alloys (HEAs) makes it possible for a material to possess both high strength and high ductility. It is with great potential to apply HEAs under extreme conditions such as in the penetrat...
关键词:WFeNiMo high-entropy alloys Tungsten heavy alloys Penetration mode Self-sharpening penetration Mushrooming deformation 
Recent advances on the nitrogen-rich 1,2,4-oxadiazole-azoles-based energetic materials被引量:1
《Defence Technology(防务技术)》2022年第3期344-367,共24页Wen-Li Cao Qamar-un-Nisa Tariq Zhi-Min Li Jun-Qing Yang Jian-Guo Zhang 
We are thankful to the NSAF(No.U1830134);NSFC(No.21905023 and 22175025);State Key Laboratory of Explosion Science and Technology(No.YBKT21-02);Open Research Fund Program of CAS Key Laboratory of Energy Regulation Materials(No.ORFP2020-01)for their generous financial support.
This review covers recent advances in the synthesis and energetic performance of nitrogen-rich 1,2,4-oxadiazole-azoles-based energetic materials.These materials comprise of 1,2,4-oxadiazole subunit as a key structural...
关键词:1 2 4-Oxadiazole-azoles Triazole TETRAZOLE FURAZAN Energetic materials FUROXAN 
Nitro-tetrazole based high performing explosives:Recent overview of synthesis and energetic properties被引量:5
《Defence Technology(防务技术)》2021年第6期1995-2010,共16页Saira Manzoor Qamar-un-nisa Tariq Xin Yin Jian-Guo Zhang 
We are thankful to the NSAF(U1830134),NSFC(21905023 and 21911530096)for their generous financial support.
Heterocyclic skeleton(Azoles)and different energetic groups containing high performing explosives are highly emerged in recent years to meet the challenging requirements of energetic materials in both military and civ...
关键词:TETRAZOLE Energetic materials Functional groups HETEROCYCLIC High-performing explosives 
A melt-cast Duan-Zhang-Kim mesoscopic reaction rate model and experiment for shock initiation of melt-cast explosives
《Defence Technology(防务技术)》2021年第5期1753-1763,共11页Shu-rui Li Zhuo-ping Duan Lian-sheng Zhang Zhuo-cheng Ou Feng-lei Huang 
the National Natural Science Foundation of China(Grant No.11772056);the NSAF Joint Fund(Grants No.U1630113)and the Innovative Group of Material and Structure Impact Dynamics(Grant No.11521062)。
A melt-cast Duan-Zhang-Kim(DZK)mesoscopic reaction rate model is developed for the shock initiation of melt-cast explosives based on the pore collapse hot-spot ignition mechanism.A series of shock initiation experimen...
关键词:Melt-cast explosive Shock initiation Mesoscopic reaction rate model Hot-spot ignition Shock sensitivity 
Propagation of shock waves in dry and wet sandstone:Experimental observations,theoretical analysis and meso-scale modeling
《Defence Technology(防务技术)》2018年第5期513-521,共9页Chuang Liu Yang Wu Xian-feng Zhang Jia-jie Deng Chen-yang Xu Wei Xiong Meng-ting Tan 
Supported by NSAF (Grant No. U1730101);the National Program for Support of Top-notch Young Professionals of China (2014);the Funding of Science and Technology on Transient Impact Laboratory(Grant No. 61426060101162606001);the Postgraduate Research & Practice Innovation Program of Jiangsu Province (Grant No. KYCX18_0460)
Methods of experimental observations, theoretical analysis and meso-scale modeling were used to study the propagation processes of shock waves in dry and wet sandstone under dynamic impact in this paper.According to t...
关键词:Dynamic impact Shock wave MESO-SCALE simulation SANDSTONE 
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