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- W2024884684 abstract "Reaction front propagation rates of free standing multilayer thin foils of Co/Al have been determined using a diffusion limited reaction model by means of a method-of-lines code with a stiff solver and adaptive gridding. Predicted and measured reaction front speed variations with bilayer thickness, tb, can be separated into three regimes. The three regimes are delineated by the critical bilayer thickness, tb,c, and the bilayer thickness that produces the maximum front velocity, tb,max. The critical bilayer is composed predominately of premixed or fully reacted CoxAly with a thickness of ~2.7 nm. The front velocity in the three regimes 1) is zero when 0 ≤ tb ≤ tb,c since there are no reactants 2) increases when tb,c < tb < tb,max since the reactant concentration increases with tb and 3) decreases when tb,max < tb since the diffusive resistance increases with tb. The sensitivity of front velocity to property variation is discussed. Steady and oscillatory combustion are predicted for this material pair." @default.
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- W2024884684 date "2008-06-20" @default.
- W2024884684 modified "2023-09-25" @default.
- W2024884684 title "Heat transfer in reactive Co/Al nanolaminates" @default.
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- W2024884684 doi "https://doi.org/10.2495/ht080121" @default.
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