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Micro-hot-spot model taking into account the temperature dependence of the laser pulse absorption efficiency factor

机译:微热点模型考虑了激光脉冲吸收效率因子的温度依赖性

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摘要

An improved model of the laser initiation of the explosive decomposition of energetic materials containing light-absorbing nanoparticles is investigated. The model takes into account how the light absorption efficiency factor changes with an increasing temperature. It is demonstrated that, as the temperature of an aluminum nanoparticle in pentaerythritol tetranitrate increases from 300 to 700 K, the light absorption efficiency factor increases by a factor of over 2. It is also shown that, for each particular nanoparticle radius in the 40-150 nm range, the temperature dependence of the light absorption efficiency factor over the relevant temperature range can be interpolated well by a second-order polynomial. Taking into account the variation of the efficiency of light absorption by the aluminum nanoparticle in the initiation of the explosive decomposition of pentaerythritol tetranitrate by a 12-ns-long neodymium laser pulse reduces the calculated critical energy density by a factor of 2.11 and decreases the optimum nanoparticle radius from 98 to 92 nm.
机译:研究了一种改进的激光引发含有光吸收纳米粒子的能量材料的爆炸分解模型。该模型考虑了光吸收效率因子如何随着温度的增加而变化。结果表明,随着季戊四醇中铝纳米粒子的温度从300〜700k增加,光吸收效率因子增加了2倍。还表明,对于40-的每个特定纳米颗粒半径。 150nm范围,光吸收效率因子在相关温度范围内的温度依赖性可以通过二阶多项式内插。考虑到铝纳米粒子的光吸收效率的变化在引发季戊四醇季戊四醇的爆炸分解中,通过12-ns长的钕激光脉冲将计算的临界能量密度降低了2.11倍并降低了最佳状态纳米粒子半径为98至92nm。

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