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首页> 外文期刊>Propellants, Explosives, Pyrotechnics >The Effect of HMX Impurity and Irganox Antioxidant on Thermal Decomposition Kinetics of RDX by TG/DSC Non-Isothermal Method
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The Effect of HMX Impurity and Irganox Antioxidant on Thermal Decomposition Kinetics of RDX by TG/DSC Non-Isothermal Method

机译:HMX杂质和Irganox抗氧化对TG / DSC非等温法的热分解动力学的影响

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The non-isothermal TG/DTG/DSC technique has been used to study the thermal decomposition of RDX as pure and impure (contain 5 wt. % HMX) in the absence and presence of 5 wt. % irganox 1010 antioxidant under nitrogen atmosphere at different heating rates (4, 6, 8, and 10 degrees C min(-1)). The DSC curves show an exothermic peak for decomposition of RDX exactly after its melting point. The activation energy (E-a) for thermal decomposition of pure and impure RDX in the absence and presence of irganox was calculated using non-isothermal isoconversional methods of KAS, OFW, and Friedman for different conversion fraction (alpha) values in the range of 0.1-0.9. The pre-exponential factor (A) and the kinetic model have been determined by means of the compensation effect and the selected model is confirmed by the nonlinear fitting method. The activation energies for thermal decomposition of pure RDX in the absence and presence of irganox are 240.5 to 246.2 and 330.0 to 350.6 kJ mol(-1) with the reaction model of R-3 and D-2, respectively, whereas; the E-a values for decomposition of impure RDX in the absence and presence of antioxidant are 172.1 to 173.0 and 195.3 to 214.2 kJ mol(-1), respectively, with the reaction model of R-2 for both of them.
机译:非等温TG / DTG / DSC技术已被用于研究RDX的热分解,如纯,纯度(含有5重量%HMX)在不存在和存在下5重量%。 %Irganox 1010在不同加热速率(4,6,8和10摄氏度(-1)的氮气氛下抗氧化剂。 DSC曲线显示出放热峰,以确切地分解RDX。在缺乏和存在于IRGANOX的情况下,使用非等温同系的方法的纯和存在于IRGANOX的存在下的热分解的活化能量(EA),用于不同的转化级分(α)值在0.1- 0.9。预指数因子(A)和动力学模型已经通过补偿效果确定,并且通过非线性拟合方法确认所选模型。在不存在和Irganox的情况下,纯RDX热分解的激活能量为240.5至246.2和330.0至330.0至350.0至350.6 kJ摩尔(-1),分别是R-3和D-2的反应模型,而;在不存在和存在的情况下,抗氧化剂不纯度和存在的纯RDX的E-A值分别是172.1至173.0和195.3至214.2kJ摩尔(-1),其中r-2的反应模型。

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