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The effect of polymer matrices on the thermal hazard properties of RDX-based PBXs by using model-free and combined kinetic analysis

机译:使用无模型和组合动力学分析,聚合物基体对基于RDX的PBX的热危害特性的影响

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摘要

In this paper, the decomposition reaction models and thermal hazard properties of 1,3,5-trinitro-1,3,5-triazinane (RDX) and its PBXs bonded by Formex P1, Semtex 1A, C4, Viton A and Fluorel polymer matrices have been investigated based on isoconversional and combined kinetic analysis methods. The established kinetic triplets are used to predict the constant decomposition rate temperature profiles, the critical radius for thermal explosion and isothermal behavior at a temperature of 82. °C. It has been found that the effect of the polymer matrices on the decomposition mechanism of RDX is significant resulting in very different reaction models. The Formex P1, Semtex and C4 could make decomposition process of RDX follow a phase boundary controlled reaction mechanism, whereas the Viton A and Fluorel make its reaction model shifts to a two dimensional Avrami-Erofeev nucleation and growth model. According to isothermal simulations, the threshold cook-off time until loss of functionality at 82. °C for RDX-C4 and RDX-FM is less than 500 days, while it is more than 700 days for the others. Unlike simulated isothermal curves, when considering the charge properties and heat of decomposition, RDX-FM and RDX-C4 are better than RDX-SE in storage safety at arbitrary surrounding temperature. © 2014 Elsevier B.V.
机译:本文研究了由Formex P1,Semtex 1A,C4,Viton A和Fluorel聚合物基体键合的1,3,5-三硝基-1,3,5-三叠氮烷(RDX)及其PBX的分解反应模型和热危害特性已经基于等转化和组合动力学分析方法进行了研究。建立的动力学三重态用于预测恒定的分解速率温度曲线,热爆炸的临界半径和温度为82°C时的等温行为。已经发现,聚合物基质对RDX的分解机理的影响是显着的,从而导致非常不同的反应模型。 Formex P1,Semtex和C4可使RDX的分解过程遵循相边界控制的反应机理,而Viton A和Fluorel使其反应模型转变为二维Avrami-Erofeev成核和生长模型。根据等温模拟,对于RDX-C4和RDX-FM,在82.°C失去功能之前的阈值烹饪时间少于500天,而其他的则超过700天。与模拟的等温曲线不同,在考虑电荷特性和分解热时,RDX-FM和RDX-C4在任意环境温度下的存储安全性均优于RDX-SE。 ©2014 Elsevier B.V.

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