31. Superbiphilic laser-microengineered surfaces with a self-assembled monolayer coating for exceptional boiling performanceArmin Hadžić, Matic Može, Matevž Zupančič, Iztok Golobič, 2024, original scientific article Keywords: nucleate boiling, heat transfer enhancement, biphilic surfaces, dielectric fluids, laser microstructuring, hydrophobization, laser texturing, pool boiling, surface engineering Full text (file, 4,72 MB) This document has more files! More... |
32. Elucidating the effects of surface wettability on boiling heat transfer using hydrophilic and hydrophobic surfaces with laser-etched microchannelsDomen Žalec, Matic Može, Matevž Zupančič, Iztok Golobič, 2024, original scientific article Keywords: boiling, heat transfer coefficient, critical heat flux, laser texturing, wettability Full text (file, 6,84 MB) This document has more files! More... |
33. Aluminum micropillar surfaces with hierarchical micro- and nanoscale features for enhancement of boiling heat transfer coefficient and critical heat fluxArmin Hadžić, Matic Može, Matevž Zupančič, Iztok Golobič, 2024, original scientific article Keywords: nucleate boiling, heat transfer enhancement, critical heat flux, heat transfer coefficient, micro-nanoscale structures, micropillar porous surfaces, nanosecond laser texturing Full text (file, 6,70 MB) This document has more files! More... |
34. Remaining useful life prognostics during boiling-induced surface degradationJure Berce, Klara Arhar, Matic Može, Matevž Zupančič, Iztok Golobič, 2024, published scientific conference contribution Keywords: pool boiling, degradation, prognostics, remaining useful life, surface engineering Full text (file, 1,38 MB) This document has more files! More... |
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36. Experimental investigation of the impact of surface tension and artificial nucleation site geometry on the bubble growthMatevž Vodopivec, MG Berhe, Mattia Bucci, Matevž Zupančič, Donato Fontanarosa, Matic Može, S. Castagnet, Iztok Golobič, Maria Rosaria Vetrano, 2024, published scientific conference contribution Keywords: nucleate boiling, surface tension, microcavities, femtosecond lasers, surface functionalization Full text (file, 3,65 MB) This document has more files! More... |