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Estimation of the kinetic parameters for thermal decomposition of HNIW and its adiabatic time-to-explosion by Kooij formula

机译:用Kooij公式估算HNIW热分解的动力学参数及其绝热时间

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摘要

A differential/integral method to estimate the kinetic parameters (apparent activation energy Ea and pre-exponential factor A) for thermal decomposition reaction of energetic materials based on Kooij formula are applied to study the nonisothermal decomposition reaction kinetics of hexanitrohexaazaisowurtzitane (HNIW) by analyzing nonisothermal DSC curve data. The apparent activation energy (Ea) obtained by the in-tegral isoconversional non-isothermal method based on Kooij formula is used to check the constancy and validity of apparent activation energy by the differential/integral method based on Kooij formula. The most probable mechanism function of thermal decomposition reaction of HNIW is determined by a logical choice method. The equations for calculating the critical temperatures of thermal explosion (Tb) and adiabatic time-to-explosion (tTIad) based on Kooij formula are used to calculate the values of Tb and tTIad to evaluate the thermal safety and heat-resistant ability of HNIW. All the original data needed for analyzing the kinetic parameters are from nonisothermal DSC curves. The results show that the kinetic model function in differential form and the values of Ea and A of decomposition reaction of HNIW are 3(1 ? a)[?ln(1 ? a)]2/3, 152.73 kJ mol?1 and 1011.97 s?1, respectively, and the values of self-accelerating decomposition temperature (TSADT), Tb and tTIad are 486.55 K, 493.11 K and 52.01 s, respectively.
机译:应用基于Kooij公式的能量材料的热分解反应的差分/积分方法用于基于Kooij公式的热分解反应,通过分析非吸管来研究己基己酰己唑佐蒽醌(HNIW)的非等热分解反应动力学DSC曲线数据。通过基于Kooij公式的TegleAL异组非等温法获得的表观激活能量(EA)用于通过基于Kooij公式的差分/积分法检查表观激活能量的持续性和有效性。 HNIW热分解反应的最可能机制功能通过逻辑选择方法确定。基于Kooij公式计算用于计算热爆炸(TB)和绝热时间到爆炸(TTIAD)的临界温度的方程用于计算TB和TTIAD的值,以评估HNIW的热安全性和耐热能力。分析动力学参数所需的所有原始数据来自非等热量DSC曲线。结果表明,差异形式的动力学模型函数和HNIW的分解反应的eA和A的值为3(1?a)[Δ10)] 2/3,152.73 kJ mol?1和1011.97 S?1分别和自加速分解温度(TsAdt),Tb和TTIAD的值分别为486.55k,493.11k和52.01秒。

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  • 来源
    《兵工学报(英文版)》 |2014年第1期|28-33|共6页
  • 作者单位

    Science and Technology on Combustion and Explosion Laboratory, Xi’an Modern Chemistry Research Institute, Xi’an 710065, China;

    Science and Technology on Combustion and Explosion Laboratory, Xi’an Modern Chemistry Research Institute, Xi’an 710065, China;

    Science and Technology on Combustion and Explosion Laboratory, Xi’an Modern Chemistry Research Institute, Xi’an 710065, China;

    College of Communication Science and Engineering, Northwest University, Xi’an 710069, China;

    Department of Mathematics, Northwest University, Xi’an 710069, China;

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  • 入库时间 2022-08-19 03:35:07
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