This paper analyzes five typical shock wave ignition criteria and related data, and finds that these criteria ignore the microstructure effects in energetic materials.
分析含能材料的五种典型冲击波引发的判据和有关数据,认为目前的判据局限于没有考虑装药微结构的影响。
When the temperature and pressure behind incident shock wave decrease, the photochemical ignition delay times will increase.
光化学点火延迟时间随初始爆炸波后温度和压力的降低而增长。
When the temperature and pressure behind incident shock wave decrease, the photochemical ignition delay times will increase.
光化学点火延迟时间随初始爆炸波后温度和压力的降低而增长。
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