Abstract

An SHS reaction in Metal-Gas systems under conditions of forced infiltration of gaseous reagent into a co-flow reactor was numerically modeled. It has been demonstrated that, at a constant rate of gas inflow into a reactor, the reaction front may acquire the configuration of the Saffman-Taylor fingers, which is inadmissible in the manufacturing process. The conditions ensuring frontal propagation of SHS reaction over the entire length of the reactor have been formulated.

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