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Study on Energy Output Characteristics of Explosives Containing B/Al in the Air Blast

机译:空气爆炸中B / Al爆炸物能量输出特性研究

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摘要

It is a key problem to design and prepare metallized explosives of high energy and low sensitivity. In order to study the effect of the content of the boron/aluminum (B/Al) compound powder on the energy output property of metallized explosives in the air blast, three HMX-based explosives containing B/Al were designed and prepared. Air blast tests of cylindrical samples are performed, accompanied by numerical simulations by the finite element program LS-DYNA. The results show that the shock wave overpressures of explosives containing B/Al are higher than those of explosives containing Al under the same conditions. The deviations between the values calculated by the empirical equation and the measured values are smaller than 3.5 kPa, and the deviations between the values obtained in numerical simulations and the measured values are smaller than 4.9 kPa. Although the Al powder can enter the reaction with detonation products and air easier, the burning time of the boron powder is longer and the released energy is larger. Moreover, as the content of the B/Al compound powder increases, the burning time becomes longer, and the aftereffect work ability and the damage effect become stronger.
机译:设计和准备高能量和低灵敏度的金属化爆炸物是一个关键问题。为了研究硼/铝(B / Al)复合粉末在空气爆炸中金属化炸药的能量输出特性上的效果,设计并制备了三种含有B / Al的HMX的炸药。通过有限元件LS-DYNA进行数值模拟,进行圆柱形样品的空气喷砂测试。结果表明,在相同条件下,含有B / Al的爆炸物的冲击波超压度高于含有Al的炸药。由经验方程和测量值计算的值之间的偏差小于3.5kPa,并且在数值模拟中获得的值与测量值之间的偏差小于4.9kPa。虽然Al粉末可以与爆轰产品和空气进入反应,但硼粉末的燃烧时间更长,释放的能量较大。此外,随着B / Al复合粉末的含量增加,燃烧时间变长,并且后活的工作能力和损伤效果变得更强。

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