Effects of pore morphology and topography on the wettability transition of metal porous structures exposed to ambient air
摘要
Capillary imbibition of porous structures is crucial for capillary-driven evaporative cooling systems that utilize capillary drive to transport working fluid. Even though the use of working fluids with high surface tension improves the capillary pumping pressure, larger cohesive forces could lead to larger contact angles, if the constituent porous surface renders low surface energy. This study investigates the influence of different pore morphologies and topographies on the wettability transition of several different pore structures when exposed to air, using deionized water as the working fluid. The droplet absorption rates of the porous structures were obtained over a period of 28 days. The samples with larger microscopic pore-scale roughness and lower porosity exhibited greater retention of their wettability over time. The Cu