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首页> 外文期刊>Russian journal of physical chemistry, B. >Onset and development of convective burning in highly porous charges of ammonium perchlorate and its mixtures with aluminum
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Onset and development of convective burning in highly porous charges of ammonium perchlorate and its mixtures with aluminum

机译:高多孔性高氯酸铵及其与铝的混合物中对流燃烧的发生和发展

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摘要

The onset and development of convective burning in the charges with a high porosity prepared from the finely dispersed ammonium perchlorate and its mixtures with aluminum ASD-4 is studied. The experiments were carried out in a constant volume bomb with the record of the pressure-time history and in the confinement with a slit, which makes it possible to perform simultaneously the photographic and piezometric recording of the process. Special attention is given to the mixtures with the increased aluminum content. The minimum lengths of samples are determined at which convective burning or explosion occur. The dependence of these lengths on the aluminum concentration in the mixture is determined. The possibility of convective burning and low-velocity detonation in ammonium perchlorate without the combustible additive is shown. It is established that the introduction of aluminum causes the ignition of the dispersed suspension behind the front of convective burning with the formation of the brightly glowing high-pressure zone (the secondary wave), which intensively expands in both sides from the place of origin. When the secondary wave overtakes the front of convective burning, the low-velocity detonation appears. The obtained results are of interest for explosion safety of the mixtures of ammonium perchlorate with aluminum and for designing generators of high-temperature suspensions with aluminum particles.
机译:研究了由细分散的高氯酸铵及其与铝ASD-4的混合物制得的高孔隙率装料中对流燃烧的发生和发展。实验是在恒定体积的炸弹中进行的,其中记录了压力时间的历史记录,并在狭缝内进行了限制,这使得可以同时进行过程的照相和测压记录。特别注意铝含量增加的混合物。确定发生对流燃烧或爆炸的样品的最小长度。确定这些长度对混合物中铝浓度的依赖性。显示了在没有可燃添加剂的情况下在高氯酸铵中对流燃烧和低速爆轰的可能性。可以确定的是,铝的引入导致对流燃烧前面后面的分散悬浮液着火,并形成了明亮发亮的高压区(次级波),该高压区从原点开始在两侧强烈膨胀。当次级波超过对流燃烧的前沿时,出现低速爆震。所获得的结果对于高氯酸铵与铝的混合物的爆炸安全性以及设计具有铝颗粒的高温悬浮液的发生器是有意义的。

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