Aging Effect Prediction of Energetic Materials Using Isoconversional Technique

IF 0.7 Q4 ENGINEERING, MECHANICAL Journal of the Korean Society of Combustion Pub Date : 2019-03-31 DOI:10.15231/JKSC.2019.24.1.007
Yoocheon Kim
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Abstract

The decomposition process of typical energetic material (EM) may consist of thousands of individual reactions as well as many intermediate species. However, one-step decomposition kinetics is routinely utilized for prediction of the shelf life of EMs. The inclusion of detailed multi-step chemistry in the kinetic mechanism can improve the reliability of the lifetime prediction. This study proposes a novel procedure for lifetime prediction of EMs, which adopts isoconversional kinetics to represent the decomposition reaction scheme. The pertinent EMs considered in the study include 97.5% cyclotrimethylene-trnitramine (RDX), 95% cyclotetramethylene-tetranitramine (HMX), and boron potassium nitrate (BPN). Differential Scanning Calorimetry (DSC) was utilized for extracting the said isoconversional kinetics complemented by experimental validation of the proposed chemical kinetics through a comparison of the numerical lifetime predictions with accelerated aging experiment measurements.
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用等转换技术预测含能材料的老化效应
典型含能材料(EM)的分解过程可能包括数千个单独的反应以及许多中间物种。然而,一步分解动力学通常用于预测EM的保质期。在动力学机制中包含详细的多步骤化学可以提高寿命预测的可靠性。本研究提出了一种新的EM寿命预测方法,该方法采用等转化动力学来表示分解反应方案。研究中考虑的相关EM包括97.5%的环三亚甲基-四硝胺(RDX)、95%的环四亚甲基-四硝酰胺(HMX)和硝酸硼钾(BPN)。差示扫描量热法(DSC)用于提取所述等转化动力学,并通过将数值寿命预测与加速老化实验测量结果进行比较,对所提出的化学动力学进行实验验证。
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