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Effects of Aluminum on Thermal Decomposition of ε-hexanitrohexaazaisowurtzitane

机译:铝对ε-六硝基六氮杂异纤锌矿型结构烷烃热分解的影响

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The effect of aluminum particle size (10 urn and 50 nm) on the thermal decomposition of ε-hexanitrohexaazaisowurtzitane (HNIW) was investigated using differential scanning calorimetry (DSC), thermogravimetry-derivative thermogravimetry (TG-DTG), and DSC-TG, respectively. The results showed that addition of mirco and nano-Al powders had little effects on the endothermic peak of HNIW, while the exothermic peak temperature decreased. The kinetic parameters of thermal decomposition of Al/HNIW were obtained by Kissinger and Flynn-Wall-Ozawa methods. The decomposition mechanisms of HNIW were demonstrated by the non-isothermal kinetics in the absent and presence of 30 wt% micro- or nano-Al, which are conformed to Avrami-Erofeev equation. The factor of nucleus growth for the 50 nm Al/HNIW mixture is found to be n=1/4, as compared to n=1/3 for HNIW with and without the micro-sized Al.
机译:分别使用差示扫描量热法(DSC),热重分析-衍生热重分析(TG-DTG)和DSC-TG研究了铝粒径(10 n和50 nm)对ε-六硝基六氮杂异纤锌矿型结构烷烃(HNIW)热分解的影响。结果表明,微粉和纳米铝粉的添加对HNIW的吸热峰影响很小,而放热峰温度下降。 Al / HNIW热分解的动力学参数是通过Kissinger和Flynn-Wall-Ozawa方法获得的。 HNIW的分解机理通过在不存在和存在30 wt%的微量或纳米Al的情况下的非等温动力学来证明,这些动力学符合Avrami-Erofeev方程。发现50nm Al / HNIW混合物的核生长因子为n = 1/4,而有和没有微米尺寸Al的HNIW的n = 1/3。

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