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- W2072656703 abstract "Abstract The isothermal wetting and spreading behaviors of molten Zr 55 Cu 30 Al 10 Ni 5 metallic glass alloy on B 4 C substrates were studied using a modified sessile drop method at 1133–1253 K in a high vacuum. A distinct reaction layer consisting of ZrB 2 and ZrC x was produced at the interface and displayed good wettability with the molten alloy. The entire spreading kinetics could be characterized by four representative stages: (i) an initial rapid spreading presumably driven by adsorption of the active Zr atoms at the solid–liquid interface, (ii) a quasi-linear and (iii) a linear spreading stage controlled by the chemical reaction between Zr and B 4 C in both cases, and (iv) an approach-to-equilibrium stage with precipitation of crystals in the liquid. An increase in temperature promotes the wetting and reaction. In view of the reasonable wettability and reactivity, there is a potential for preparing Zr-base bulk metallic glass matrix composites reinforced by in situ ZrC–ZrB 2 hybrid ceramic particulates using B 4 C as a reaction agent by way of an infiltration synthesis technique." @default.
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- W2072656703 date "2009-10-01" @default.
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- W2072656703 title "Wettability and reactivity between B4C and molten Zr55Cu30Al10Ni5 metallic glass alloy" @default.
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- W2072656703 doi "https://doi.org/10.1016/j.matchemphys.2009.06.017" @default.
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