TY - JOUR
T1 - Experimental study on over-loading of strong flash pyrotechnic composite
AU - Ba, Shu Hong
AU - Jiao, Qing Jie
AU - Ren, Hui
AU - Zhang, Qing Li
PY - 2007/4
Y1 - 2007/4
N2 - Over-loading of strong flash pyrotechnic composite was studied by using drop hammer simulation device. The experimental results show that strong flash pyrotechnic composite has high over-loading ability. When charges density was 1.9 × 103 kg·m-3, loading stress was 653 MPa, loading length was 40 mm, loading of strong flash pyrotechnic composite was 8.59 × 105 g (g = 10 m·s-2). When loading stress was more than 653 MPa, the hotspots produced by strong over-loading couldn't ignite strong flash pyrotechnic composite. The reasons that strong flash pyrotechnic composite has high overloading ability are (1) thermal decomposition temperature of oxidant and ignition temperature of combustible are very high in pyrotechnic composite, the pyrotechnic reaction cannot be induced by hotspots; (2) charge flaws of pressed flash pyrotechnic composite are better improved and hotspot generation source is reduced. (3) the contact areas between KClO4 and Al are increased when strong flash pyrotechnic composite is extruded into pillar, so heat produced by hotspot generation source can rapidly be transmitted through metal particle, furthermore, hotspot is extinguished.
AB - Over-loading of strong flash pyrotechnic composite was studied by using drop hammer simulation device. The experimental results show that strong flash pyrotechnic composite has high over-loading ability. When charges density was 1.9 × 103 kg·m-3, loading stress was 653 MPa, loading length was 40 mm, loading of strong flash pyrotechnic composite was 8.59 × 105 g (g = 10 m·s-2). When loading stress was more than 653 MPa, the hotspots produced by strong over-loading couldn't ignite strong flash pyrotechnic composite. The reasons that strong flash pyrotechnic composite has high overloading ability are (1) thermal decomposition temperature of oxidant and ignition temperature of combustible are very high in pyrotechnic composite, the pyrotechnic reaction cannot be induced by hotspots; (2) charge flaws of pressed flash pyrotechnic composite are better improved and hotspot generation source is reduced. (3) the contact areas between KClO4 and Al are increased when strong flash pyrotechnic composite is extruded into pillar, so heat produced by hotspot generation source can rapidly be transmitted through metal particle, furthermore, hotspot is extinguished.
KW - Charge
KW - Military chemistry and pyrotechnic technology
KW - Over-loading ability
KW - Simulating experiment
KW - Strong flash pyrotechnic composite
UR - http://www.scopus.com/inward/record.url?scp=34249300804&partnerID=8YFLogxK
M3 - Article
AN - SCOPUS:34249300804
SN - 1006-9941
VL - 15
SP - 162
EP - 164
JO - Hanneng Cailiao/Chinese Journal of Energetic Materials
JF - Hanneng Cailiao/Chinese Journal of Energetic Materials
IS - 2
ER -