11 citations · 12 across the 6 of their papers we have counts for
6 papers
Droplet impact of emulsions on inclined microstructured surfaces
Ulises Rosales-Gallegos, Laura Oropeza-Ramos, Francisco Manuel Sánchez-Arévalo +1
Droplet impacts rarely occur on horizontal smooth surfaces, yet the combined influence of surface inclination, microstructure, and fluid composition remains poorly understood for e…
Gas density influences the transition from capillary collapse to surface seal in microfluidic jet impacts on deep pools
Thijmen B. Kroeze, David Fernandez Rivas, Miguel A. Quetzeri-Santiago
Studies of liquid jet impacts onto a deep liquid pool are of great significance for a multitude of engineering and environmental applications. During jet impact, the free surface o…
Cavitation-induced microjets tuned by channels with alternating wettability patterns
Jelle J. Schoppink, Keerthana Mohan, Miguel A. Quetzeri-Santiago +3
A laser pulse focused near the closed end of a glass capillary partially filled with water creates a vapor bubble and an associated pressure wave. The pressure wave travels through…
Microfluidic jet impact: spreading, splashing, soft substrate deformation and injection
Diana L. van der Ven, Davide Morrone, Miguel A. Quetzeri-Santiago +1
Injecting with needles causes fear, pain and contamination risks. Billions of injections every year also cause environmental burden in terms of material consumption and waste. Cont…
Cavity dynamics after the injection of a microfluidic jet in capillary bridges
Miguel A. Quetzeri-Santiago, David Fernandez Rivas
The impact of solid and liquid objects (projectiles) onto liquids and soft solids (targets) generally results on the creation and expansion of an air cavity inside the impacted obj…
Impact of a microfluidic jet onto a pendant droplet
Miguel A. Quetzeri-Santiago, Ian W. Hunter, Devaraj van der Meer +1
High speed microfluidic jets can be generated by a thermocavitation process: from the evaporation of the liquid inside a microfluidic channel, a rapidly expanding bubble is formed…