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xAl 2O 3 Mixtures]]>

机译: mixtures]]]>

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摘要

The applicability of the percolation theory to describe the combustion of powdered and pelletized Ti + C mixtures in the vicinity of the concentration limits of the combustion wave propagation using different methods of dilution with an inert material—fine and coarse Al~(2)O~(3)particles—has been studied. It has been shown that the pelletized mixtures diluted with coarse inert particles by more than 50% undergo incomplete combustion; at the combustion limit, the incompleteness achieves 50%; this finding is in qualitative agreement with the percolation theory. It has been found that the obtained concentration limit of combustion (75 wt %) and the ratio of the combustion velocities of the undiluted mixture and the mixture at the propagation limit (2.6) correspond to the predictions of the percolation theory. The possibility of flame propagation at the calculated combustion temperature of the mixture below the melting point of titanium is attributed to the presence of a percolation cluster. Necessary conditions for the applicability of the percolation theory to describe the combustion processes in condensed gasless systems have been formulated.
机译:渗透理论的适用性描述了使用不同稀释方法的燃烧波传播的浓度限制附近的粉末和粒状Ti + C混合物的燃烧使用不同的稀释方法,用惰性材料 - 细细和粗al〜(2)O〜 (3)粒子已经研究过。已经证明,用粗惰性颗粒稀释的粒化混合物超过50%的不完全燃烧;在燃烧极限下,不完整性达到50%;这一发现与渗滤理论有关。已经发现,所获得的燃烧浓度极限(75wt%)和未稀释的混合物的燃烧速度与传播限制(2.6)的混合物的比例对应于渗滤理论的预测。在钛的熔点低于钛的混合物的计算出的燃烧温度下火焰繁殖的可能性归因于渗透簇的存在。制定了渗透理论的适用性的必要条件,以描述冷凝无气系统中的燃烧过程。

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