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Thermoanalytical Investigation of Some Binary Pyrotechnic Mixtures of Ammonium Azide as Chemical Gas Generating Systems

机译:叠氮化铵作为化学气体发生系统的二元烟火混合物的热分析研究

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摘要

The conventional NaN3/oxidants gas generator pyrotechnic mixtures suffer from leaving undesirable solid residues. The presented investigation aimed to overcome this problem through mixing of NH4N3 particles with some metallic components, and to introduce some new gas generator pyrotechnic mixtures. In this work, volatile ammonium azide particles were initially stabilized via microencapsulation technique, and blended with Zr, Ti, ZrH2, and TiH2 powders to produce different gas generation mixtures. Thermal properties and kinetic parameters of these pyrotechnic mixtures were investigated by using thermal analysis (TG/DTA and DSC) techniques. The apparent activation energy (E), G(#), H-#, S-#, and critical ignition temperature (T-b) of the ignition processes of the mixtures were obtained from the DSC experiments. Among the investigated mixtures, NH4N3/ZrH2 composition was found to show desirable efficiency, and also it can be considered as a safe pyrotechnic composition for gas generation property, due to its moderate ignition temperature.
机译:常规的NaN3 /氧化剂气体发生器的烟火混合物会留下不希望的固体残留物。提出的研究旨在通过将NH4N3颗粒与一些金属成分混合来克服此问题,并引入一些新的气体发生器烟火混合物。在这项工作中,首先通过微囊化技术稳定了挥发性叠氮化铵颗粒,并将其与Zr,Ti,ZrH2和TiH2粉末共混以产生不同的气体生成混合物。通过使用热分析(TG / DTA和DSC)技术研究了这些烟火混合物的热性质和动力学参数。从DSC实验获得了混合物的着火过程的表观活化能(E),G(#),H-#,S-#和临界着火温度(T-b)。在所研究的混合物中,发现NH4N3 / ZrH2组合物显示出理想的效率,并且由于其适中的着火温度,因此可以认为是一种安全的烟气组合物,用于产生气体。

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