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- W4320341490 abstract "Film boiling is typically the rate-limiting process during quenching relevant to manufacturing, material processing, and vitrification. Here, we report on the effect of macroscale surface extends (fins) and microscale textures on the enhancement of quenching heat transfer performance. At a quench pool temperature of 80 °C, the pin-finned surfaces with hierarchical roughness decrease the quench duration by 4.5 times, 3.4 times, and 1.3 times compared to a plane, annular-finned, and pin-finned substrates, respectively. Annular and pin-finned surface extends influence the vapor geometry in the film boiling regime and trigger a premature collapse of the vapor film on vertical cylinders, elevating the minimum film boiling temperature. The pin fins enable higher heat transfer in the film and transition boiling regimes by disrupting the vapor film while providing a pathway for vapor escape, unlike annular fins. The hierarchical surfaces with microtextures etched on the pin fins further increase heat dissipation by offering nucleation sites. We discuss the role of surface textures on the range of temperatures that sustain the transition boiling regime during quenching." @default.
- W4320341490 created "2023-02-13" @default.
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- W4320341490 date "2023-05-01" @default.
- W4320341490 modified "2023-09-30" @default.
- W4320341490 title "Enhancement of quenching heat transfer performance through destabilization of vapor film" @default.
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- W4320341490 doi "https://doi.org/10.1016/j.ijheatmasstransfer.2023.123851" @default.
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