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- W1564193669 abstract "This chapter focuses on the development and the performance enhancement associated with the microporous coating in nucleate pool and flow boiling of highly wetting fluids, which are inert, dielectric, and can have low boiling points making them desirable for electronics cooling applications; however, their poor thermophysical properties require the use of heat transfer enhancement methods to provide a useful operating range. The microporous coating was developed specifically to enhance nucleate boiling performance in highly wetting fluids and to be benign enough for direct application to sensitive electronic chips. The microporous coating is a mixture of small particles (1- to 20-μm-diameter) and epoxy binder that creates a thin (≈50-μm thick), porous structure that contains re-entrant cavities. It is a surface treatment used to increase vapor/gas entrapment volume and active nucleation site density by forming a porous structure with cavities much smaller than conventional metallic porous coatings. Coating development improves incipience using re-entrant cavities and to enhance nucleate boiling heat transfer and critical heat flux (CHF) by significantly increasing the number of active nucleation sites. Under flow boiling conditions, the enhanced heat transfer benefit of the microporous coating depends on the boiling regime. In the boiling-dominated, subcooled convective boiling regime, the coating enables widespread subcooled boiling, thus providing significant heat transfer enhancements. The chapter discusses the development, optimization, and performance of the microporous coating and also highlights the physics behind the enhancement provided by the microporous coating." @default.
- W1564193669 created "2016-06-24" @default.
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- W1564193669 date "2004-01-01" @default.
- W1564193669 modified "2023-10-14" @default.
- W1564193669 title "A New Microporous Surface Coating for Enhancement of Pool and Flow Boiling Heat Transfer" @default.
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- W1564193669 doi "https://doi.org/10.1016/s0065-2717(04)38002-0" @default.
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