Levitation and self-propelled functions of the Leidenfrost phenomena are attractive. In this study, we propose a Leidenfrost glider having a ratchet-like topology under its body along with the driving method using the asymmetrical viscous vapor flow, as a prototype of a future vehicle that can move on a flat shallow layer freely. We observed that this vehicle can be accelerated to the velocity of approximately 0.2 m/s on a shallow water layer and the direction can be quickly controlled by changing the center of gravity of the vehicle. Our device might be important to reduce the worldwide energy loss of vehicles or to develop innovative microfluidic transportation systems in the future. (C) 2018 Author(s).ArticleAIP ADVANCES.8(11):115209(201...
A fundamental limitation to the ability to transport sessile droplets is frictional forces arising f...
The mobility of Leidenfrost drop has been exploited for the manipulation of drop motions. In the cla...
We theoretically investigate the behavior of Leidenfrost drops on a flat substrate submitted to a ho...
Levitation and self-propelled functions of the Leidenfrost phenomena are attractive. In this study, ...
International audienceAs discovered by Leidenfrost, liquids placed on very hot solids levitate on a ...
As discovered by Leidenfrost, liquids released over very hot solids levitate on a thin cushion of th...
International audienceLiquids in the Leidenfrost state were shown by Linke to self-propel if placed ...
The Leidenfrost effect allows droplets to be transported on a virtually frictionless layer of vapor ...
International audienceAn evaporating drop placed on a ratchet self-propels, as discovered by Linke e...
Overcoming friction between moving components is important for reducing energy losses and component ...
International audienceWe propose a model for the propulsion of Leidenfrost solids on ratchets based ...
A fundamental limitation to the ability to transport sessile droplets is frictional forces arising f...
A fundamental limitation to the ability to transport sessile droplets is frictional forces arising f...
The mobility of Leidenfrost drop has been exploited for the manipulation of drop motions. In the cla...
We theoretically investigate the behavior of Leidenfrost drops on a flat substrate submitted to a ho...
Levitation and self-propelled functions of the Leidenfrost phenomena are attractive. In this study, ...
International audienceAs discovered by Leidenfrost, liquids placed on very hot solids levitate on a ...
As discovered by Leidenfrost, liquids released over very hot solids levitate on a thin cushion of th...
International audienceLiquids in the Leidenfrost state were shown by Linke to self-propel if placed ...
The Leidenfrost effect allows droplets to be transported on a virtually frictionless layer of vapor ...
International audienceAn evaporating drop placed on a ratchet self-propels, as discovered by Linke e...
Overcoming friction between moving components is important for reducing energy losses and component ...
International audienceWe propose a model for the propulsion of Leidenfrost solids on ratchets based ...
A fundamental limitation to the ability to transport sessile droplets is frictional forces arising f...
A fundamental limitation to the ability to transport sessile droplets is frictional forces arising f...
The mobility of Leidenfrost drop has been exploited for the manipulation of drop motions. In the cla...
We theoretically investigate the behavior of Leidenfrost drops on a flat substrate submitted to a ho...