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Initiation and development of exothermic reactions during solid-phase synthesis under explosive loading

机译:爆炸载荷下固相合成过程中放热反应的引发和发展

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摘要

The previous numerical and experimental studies of the solid-phase synthesis of porous reactive mixtures (Al-S and Al-Tf) placed into cylindrical ampoules subjected to explosive detonation revealed the sharp increase in temperatures and pressures. The results have shown that high heat release and high increase in pressure due to exothermic reactions in the mixture, on the one hand, promote the faster development of reactions and, on the other hand, contribute to the formation of a gas phase that, in turns, may lead to the damage or even fracture of ampoules. This problem is solved by adding an inert porous aluminum layer to the bottom part of the mixture. Computations are carried out using the model of a multicomponent medium and the finite element method. Numerical simulation has shown that in this case the fracture of cylindrical ampoules is not observed.
机译:以前的数值研究和实验研究表明,将多孔反应混合物(Al-S和Al-Tf)固相合成到圆柱形安瓿中进行爆炸性爆炸,发现温度和压力急剧增加。结果表明,由于混合物中的放热反应导致的高放热和高压力增加,一方面促进了反应的更快发展,另一方面促进了气相的形成,气相可能会导致安瓿的损坏甚至破裂。通过在混合物的底部添加惰性多孔铝层可以解决该问题。使用多组分介质模型和有限元方法进行计算。数值模拟表明,在这种情况下,没有观察到圆柱形安瓿的破裂。

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