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Thermal Behavior,Nonisothermal Decomposition Reaction Kinetics of Mixed Ester Double-base Gun Propellants

机译:酯基双基火药的热行为,非等温分解反应动力学

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The thermal decomposition behavior and nonisothermal reaction kinetics of the double-base gun propellants containing the mixed ester of triethyleneglycol dinitrate(TEGDN) and nitroglycerin(NG) were investigated by thermogravimetry(TG) and differential thermogravimetry(DTG),and differential scanning calorimetry(DSC) under the high-pressure dynamic ambience.The results show that the thermal decomposition processes of the mixed nitric ester gun propellants have two mass-loss stages.Nitric ester evaporates and decomposes in the first stage,and nitrocellulose and centralite Ⅱ(C2) decompose in the second stage.The mass loss,the DTG peak points,and the terminated temperatures of the two stages are changeable with the difference of the mass ratio of TEGDN to NG.There is only one obvious exothermic peak in the DSC curves under the different pressures.With the increase in the furnace pressure,the peak temperature decreases,and the decomposition heat increases.With the increase in the content of TEGDN,the decomposition heat decreases at 0.1 Mpa and rises at high pressure.The variety of mass ratio of TEGDN to NG makes few effect on the exothermic peak temperatures in the DSC curves at different pressures.The kinetic equation of the main exothermal decomposition reaction of the gun propellant TG0601 was determined as:da/dt-=1021.59(1-a)3e-2.60×104/T The reaction mechanism of the process can be classified as chemical reaction.The critical temperatures of the thermal explosion(Tbe and Tbp) obtained from the onset temperature(Te) and the peak temperature(Tp) are 456.46 and 473.40 K,respectively.△S≠,△H≠,and △G≠of the decomposition reaction are 163.57 J·mol-1·K-1,209.54 kJ·mol-1,and 133.55kJ·mol-1,respectively.
机译:采用热重法(TG),差示热重法(DTG)和差示扫描量热法(DSC)研究了三硝酸甘油二酯(TEGDN)和硝酸甘油(NG)混合酯的双基火药的热分解行为和非等温反应动力学。结果表明,硝酸酯枪混合推进剂的热分解过程有两个质量损失阶段,硝酸酯在第一阶段蒸发分解,硝酸纤维素和中心沸石Ⅱ(C2)分解。在第二阶段,随着TEGDN与NG的质量比的不同,两阶段的质量损失,DTG峰值点和终止温度是变化的。在不同的条件下,DSC曲线中只有一个明显的放热峰。随着炉内压力的增加,峰值温度降低,分解热增加。 TEGDN,分解热在0.1 Mpa时降低,而在高压下升高.TEGDN与NG的质量比变化对不同压力下DSC曲线中的放热峰温度影响很小。枪推进剂TG0601的确定为:da / dt- = 1021.59(1-a)3e-2.60×104 / T该过程的反应机理可归为化学反应,其热爆炸的临界温度为Tbe和Tbp起始温度(Te)和峰值温度(Tp)所得的)分别为456.46和473.40 K.分解反应的△S≠,△H≠和△G≠为163.57 J·mol-1·K- 1,209.54 kJ·mol-1和133.55kJ·mol-1。

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