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Thermal safety predictions for kilo-scales TKX-50 single explosive in storage

机译:千尺度TKX-50单一爆炸的热安全预测

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Dihydroxylammonium 5, 5'-BistetrazoIe-I, I '-diolate (TKX-50) has been widely studied in recent days. However, as a new kind of energetic materials, in addition to its basic properties, people are also concerned about its potentially dangerous caused by fire and explosion in production, transportation and storage. In this paper, a improved thermal analysis program was employed for predicting the thermal safety of kilo-scales TKX-50. The running principle of the advanced program is based on a differential isoconversional method, which can be used to obtain the kinetic results and simulation results by employing the data of accelerating rate calorimeter (ARC) and differential scanning calorimetry (DSC). Then, two important safety parameters (time to maximum rate under adiabatic conditions (TMR_(ad)) and self-accelerating decomposition temperature (SADT)) for different kilo-scales TKX-50 were obtained and discussed. Finally, the effects of ambient temperature on the thermal explosion of kilo-scale TKX-50 were investigated by using finite element analysis (FEA). The information gained is useful for the storage of kilo-scale TKX-50 in storage, what's more, the method has significant reference value for thermal safety evaluation of other energetic materials during their storages.
机译:二羟基铵5,5'- Bistrozoie-i,I'-二醇(TKX-50)在最近几天被广泛研究。然而,作为一种新的精力充沛的材料,除了其基本性质之外,人们还涉及其在生产,运输和储存中的火灾和爆炸造成的潜在危险。在本文中,采用了一种改进的热分析程序来预测千尺度TKX-50的热安全性。高级程序的运行原理基于差分异组方法,该方法可用于通过采用加速速率量热计(ARC)和差示扫描量热法(DSC)的数据来获得动力学结果和仿真结果。然后,获得了两个重要的安全参数(在绝热条件下的最大速率(TMR_(AD))和自我加速分解温度(SADT),并讨论并讨论。最后,通过使用有限元分析(FEA)研究了环境温度对千垢TKX-50热爆炸的影响。所获得的信息对于储存千尺寸TKX-50的存储是有用的,更重要的是,该方法在其存储期间对其他能量材料的热安全评估具有重要的参考值。

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