Javascript must be enabled to continue!
Evaporation and deposition of inclined colloidal droplets
View through CrossRef
AbstractColloidal droplets on flat solid substrates commonly leave symmetric ring-like deposits due to coffee-ring flows during evaporation. On inclined substrates, droplet shapes may become asymmetric by gravity. On this basis, it is not clear how their evaporation dynamics and final deposits are changed depending on inclination. Here we explore evaporation and deposition dynamics of colloidal droplets on inclined substrates, mainly by controlling colloidal particle size, substrate inclination, and relative humidity, which are crucial to gravitational intervention and evaporation dynamics. We experimentally investigate two different flows with opposite directions: downward sedimentation flows by gravity ($$v_s$$
v
s
) and upward capillary flows by evaporation ($$v_c$$
v
c
). We find that the competition of two flows determines the formation of final deposits with a flow speed ratio of $$\alpha = v_s/v_c$$
α
=
v
s
/
v
c
. Notably, for $$\alpha$$
α
$$\ll$$
≪
1, evaporation-driven upward flows overwhelm sedimentation-driven downward flows, resulting in accentuated particle movement towards the top ring, which seems to defy gravitational intervention. We suggest a possible explanation for the flow speed dependence of final deposits in evaporating colloidal droplets. This study offers a framework to understand the intervention of inclination to the formation of final deposits and how to overcome the deposit pattern radial asymmetry, achieving symmetric deposit widths from inclined colloidal droplets.
Springer Science and Business Media LLC
Title: Evaporation and deposition of inclined colloidal droplets
Description:
AbstractColloidal droplets on flat solid substrates commonly leave symmetric ring-like deposits due to coffee-ring flows during evaporation.
On inclined substrates, droplet shapes may become asymmetric by gravity.
On this basis, it is not clear how their evaporation dynamics and final deposits are changed depending on inclination.
Here we explore evaporation and deposition dynamics of colloidal droplets on inclined substrates, mainly by controlling colloidal particle size, substrate inclination, and relative humidity, which are crucial to gravitational intervention and evaporation dynamics.
We experimentally investigate two different flows with opposite directions: downward sedimentation flows by gravity ($$v_s$$
v
s
) and upward capillary flows by evaporation ($$v_c$$
v
c
).
We find that the competition of two flows determines the formation of final deposits with a flow speed ratio of $$\alpha = v_s/v_c$$
α
=
v
s
/
v
c
.
Notably, for $$\alpha$$
α
$$\ll$$
≪
1, evaporation-driven upward flows overwhelm sedimentation-driven downward flows, resulting in accentuated particle movement towards the top ring, which seems to defy gravitational intervention.
We suggest a possible explanation for the flow speed dependence of final deposits in evaporating colloidal droplets.
This study offers a framework to understand the intervention of inclination to the formation of final deposits and how to overcome the deposit pattern radial asymmetry, achieving symmetric deposit widths from inclined colloidal droplets.
Related Results
Evaporation Characteristics of Sessile Droplet on Copper Surface at Constant Temperature
Evaporation Characteristics of Sessile Droplet on Copper Surface at Constant Temperature
Evaporation of sessile droplets on hot surfaces is the most important component in spray cooling and other processes. In this paper, the dynamic characteristics of non-boiling evap...
Evaporation Characteristics of Two Interacting Moving Droplets
Evaporation Characteristics of Two Interacting Moving Droplets
The droplet evaporation in sprays and clouds is largely influenced by the interacting surrounding droplets. This study presents a numerical investigation on the evaporation dynamic...
Simulation study on the single droplet evaporation of N-tetradecane with CeO2 nanoparticles
Simulation study on the single droplet evaporation of N-tetradecane with CeO2 nanoparticles
To investigate the influence of CeO2 nanoparticles on the evaporation characteristics of fuel droplets, numerical simulation for single nano-fuel droplet evaporation was conducted ...
Solvent evaporation and particle deposition of colloidal drops in inkjet printing process
Solvent evaporation and particle deposition of colloidal drops in inkjet printing process
Inkjet printing has garnered much attention due to its ability to dispense precise amounts of functional materials onto targeted areas. It is a low-cost and scalable manufacturing ...
The impact of climate change on water evaporation in Romania
The impact of climate change on water evaporation in Romania
Climate change indicates an acceleration of some components of the water cycle in nature, including evaporation and evapotranspiration. Worldwide evaporation measurements are relat...
Droplet Evaporation Characteristics of Diesel and Biodiesel Blends on Hot Surface
Droplet Evaporation Characteristics of Diesel and Biodiesel Blends on Hot Surface
Abstract
The worldwide drive to move towards renewable energy sources has made biodiesels an attractive proposition for development in replacement of diesel as a fo...
Numerical study on the evaporation process of binary droplets in the smoke agent system
Numerical study on the evaporation process of binary droplets in the smoke agent system
This study employs computational fluid dynamics (CFD) to investigate the evaporation process of the smoke agent system consisting of propylene glycol (PG) and water, aiming to expl...
Lattice Boltzmann modeling of evaporation of porous media considering conjugate heat transfer
Lattice Boltzmann modeling of evaporation of porous media considering conjugate heat transfer
Evaporation of liquids from porous media plays a significant role in both natural and industrial applications. Evaporation is influenced by various factors, including porous struct...

