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延期药粒度级配对延期精度的影响 被引量:6
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作者 张建富 胡延臣 《含能材料》 EI CAS CSCD 北大核心 2014年第1期84-88,共5页
基于粒度级配原理,制备了不同粒度的Si粉和CuO粉,混制了不同级配规格的Si-CuO延期药,进行了各规格延期药延期精度试验。结果表明:氧化剂或可燃剂粒度分布一致性越好越有利于提高延期精度;氧化剂与可燃剂3级级配不利于提高延期药延期精... 基于粒度级配原理,制备了不同粒度的Si粉和CuO粉,混制了不同级配规格的Si-CuO延期药,进行了各规格延期药延期精度试验。结果表明:氧化剂或可燃剂粒度分布一致性越好越有利于提高延期精度;氧化剂与可燃剂3级级配不利于提高延期药延期精度。接近最佳级配的2级粒度级配,延期药的延期精度较高。 展开更多
关键词 军事化学与烟火技术 延期药 粒度 颗粒(粒度) 延期精度
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Mass-front velocity of dry granular flows influenced by the angle of the slope to the runout plane and particle size gradation 被引量:18
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作者 FAN Xiao-yi TIAN Shu-jun ZHANG You-yi 《Journal of Mountain Science》 SCIE CSCD 2016年第2期234-245,共12页
The mass-front velocities of granular flows results from the joint action of particle size gradations and the underlying surfaces.However,because of the complexity of friction during flow movement,details such as the ... The mass-front velocities of granular flows results from the joint action of particle size gradations and the underlying surfaces.However,because of the complexity of friction during flow movement,details such as the slope-toe impedance effects and momentum-transfer mechanisms have not been completely explained by theoretical analyses,numerical simulations,or field investigations.To study the mass-front velocity of dry granular flows influenced by the angle of the slope to the runout plane and particle size gradations we conducted model experiments that recorded the motion of rapid and long-runout rockslides or avalanches.Flume tests were conducted using slope angles of 25°,35°,45°,and 55° and three particle size gradations.The resulting mass-front motions consisted of three stages:acceleration,velocity maintenance,and deceleration.The existing methods of velocity prediction could not explain the slowing effect of the slope toe or the momentum-transfer steady velocity stage.When the slope angle increased from 25° to 55°,the mass-front velocities dropped significantly to between 44.4% and59.6% of the peak velocities and energy lossesincreased from 69.1% to 83.7% of the initial,respectively.The velocity maintenance stages occurred after the slope-toe and mass-front velocity fluctuations.During this stage,travel distances increased as the angles increased,but the average velocity was greatest at 45°.At a slope angle of 45°,as the median particle size increased,energy loss around the slope toe decreased,the efficiency of momentum transfer increased,and the distance of the velocity maintenance stage increased.We presented an improved average velocity formula for granular flow and a geometrical model of the energy along the flow line. 展开更多
关键词 Granular flow Angle of slope Runout plane Particle size gradation Mass-front velocity Energy-profile
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