We study the vaporization and precipitation dynamics of a nanosilica encapsulated water droplet by levitating it acoustically and heating it with a CO2 laser. For all concentrations, we observe three phases: solvent evaporation, surface agglomeration, and precipitation leading to bowl or ring shaped structures. At higher concentrations, ring reorientation and rotation are seen consistently. The surface temperature from an infrared camera is seen to be dependent on the final geometrical shape of the droplet and its rotation induced by the acoustic field of the levitator. With nonuniform particle distribution, these structures can experience rupture which modifies the droplet rotational speed. (C) 2010 American Institute of Physics. doi:10.10...
Dynamics of contact free (levitated) drying of nanofluid droplets is ubiquitous in many application ...
Hollow structures with unique morphologies form due to particle agglomeration in acoustically levita...
Evaporation of pure and binary liquid droplets is of interest in thermal sprays and spray drying of ...
We study the vaporization and precipitation dynamics of a nanosilica encapsulated water droplet by l...
Preferential accumulation and agglomeration kinetics of nanoparticles suspended in an acoustically l...
The presence of nanometer size particles within an evaporating water droplet, affects the heat trans...
Radiatively heated levitated functional droplets with nanosilica suspensions exhibit three distinct ...
This short communication reports results of particle agglomeration details of an acoustically levita...
This short communication reports results of particle agglomeration details of an acoustically levita...
Acoustic levitation permits the study of droplet dynamics without the effects of surface interaction...
An experimental setup using radiative heating has been used to understand the thermo-physical phenom...
An experimental setup using radiative heating has been used to understand the thermo-physical phenom...
Understanding the transients of buckling in drying colloidal suspensions is pivotal for producing ne...
Preferential accumulation and agglomeration kinetics of nanoparticles suspended in an acoustically l...
Dynamics of contact free (levitated) drying of nanofluid droplets is ubiquitous in many application ...
Hollow structures with unique morphologies form due to particle agglomeration in acoustically levita...
Evaporation of pure and binary liquid droplets is of interest in thermal sprays and spray drying of ...
We study the vaporization and precipitation dynamics of a nanosilica encapsulated water droplet by l...
Preferential accumulation and agglomeration kinetics of nanoparticles suspended in an acoustically l...
The presence of nanometer size particles within an evaporating water droplet, affects the heat trans...
Radiatively heated levitated functional droplets with nanosilica suspensions exhibit three distinct ...
This short communication reports results of particle agglomeration details of an acoustically levita...
This short communication reports results of particle agglomeration details of an acoustically levita...
Acoustic levitation permits the study of droplet dynamics without the effects of surface interaction...
An experimental setup using radiative heating has been used to understand the thermo-physical phenom...
An experimental setup using radiative heating has been used to understand the thermo-physical phenom...
Understanding the transients of buckling in drying colloidal suspensions is pivotal for producing ne...
Preferential accumulation and agglomeration kinetics of nanoparticles suspended in an acoustically l...
Dynamics of contact free (levitated) drying of nanofluid droplets is ubiquitous in many application ...
Hollow structures with unique morphologies form due to particle agglomeration in acoustically levita...
Evaporation of pure and binary liquid droplets is of interest in thermal sprays and spray drying of ...