The evaporation characteristics of sessile water droplets on smooth hydrophobic and structured superhydrophobic heated surfaces are experimentally investigated. Droplets placed on the hierarchical superhydrophobic surface subtend a very high contact angle (similar to 160 degrees) and demonstrate low roll-off angle (similar to 1 degrees), while the hydrophobic substrate supports corresponding values of 120 degrees and similar to 10 degrees. The substrates are heated to different constant temperatures in the range of 40-60 degrees C, which causes the droplet to evaporate much faster than in the case of natural evaporation without heating. The geometric parameters of the droplet, such as contact angle, contact radius, and volume evolution over...
The heat flux distribution beneath a superhydrophobic evaporating droplet has been explored. High sp...
We numerically and experimentally investigate evaporation of a sessile droplet on a heated substrate...
International audienceIn the present study, we experimentally study the evaporation modes and kineti...
The evaporation characteristics of sessilewater droplets on smooth hydrophobic and structured superh...
The evaporation characteristics of sessile droplets on heated hydrophobic and hydrophilic surfaces a...
The evaporation of water droplets placed on heated hydrophilic, hydrophobic, and superhydrophobic su...
Sessile droplets containing colloidal suspensions of latex particles in water are evaporated on temp...
The evaporation characteristics of sessile droplets on heated hydrophobic and hydrophilic surfaces a...
The importance of investigating the heating and evaporation of droplets on hydrophobic (contact angl...
Evaporation of water droplets on a superhydrophobic substrate, on which the contact line is pinned, ...
ABSTRACT This work experimentally investigates the evaporation rates of water drops on surfaces of v...
\u3cp\u3eEvaporation of water droplets on a superhydrophobic substrate, on which the contact line is...
The aim of the current numerical study is to investigate the influence of individual effects (kineti...
Prediction and active control of the spatial distribution of particulate deposits obtained from sess...
The characteristics of water droplet heating and evaporation on structured hydrophobic and hydrophil...
The heat flux distribution beneath a superhydrophobic evaporating droplet has been explored. High sp...
We numerically and experimentally investigate evaporation of a sessile droplet on a heated substrate...
International audienceIn the present study, we experimentally study the evaporation modes and kineti...
The evaporation characteristics of sessilewater droplets on smooth hydrophobic and structured superh...
The evaporation characteristics of sessile droplets on heated hydrophobic and hydrophilic surfaces a...
The evaporation of water droplets placed on heated hydrophilic, hydrophobic, and superhydrophobic su...
Sessile droplets containing colloidal suspensions of latex particles in water are evaporated on temp...
The evaporation characteristics of sessile droplets on heated hydrophobic and hydrophilic surfaces a...
The importance of investigating the heating and evaporation of droplets on hydrophobic (contact angl...
Evaporation of water droplets on a superhydrophobic substrate, on which the contact line is pinned, ...
ABSTRACT This work experimentally investigates the evaporation rates of water drops on surfaces of v...
\u3cp\u3eEvaporation of water droplets on a superhydrophobic substrate, on which the contact line is...
The aim of the current numerical study is to investigate the influence of individual effects (kineti...
Prediction and active control of the spatial distribution of particulate deposits obtained from sess...
The characteristics of water droplet heating and evaporation on structured hydrophobic and hydrophil...
The heat flux distribution beneath a superhydrophobic evaporating droplet has been explored. High sp...
We numerically and experimentally investigate evaporation of a sessile droplet on a heated substrate...
International audienceIn the present study, we experimentally study the evaporation modes and kineti...