The International Journal of Advanced Manufacturing Technology,
Journal Year:
2024,
Volume and Issue:
133(1-2), P. 307 - 319
Published: May 14, 2024
Abstract
This
study
investigates
the
impact
of
combined
texturing
by
micromachining
and
chemical
functionalization
on
wetting
behavior
water
condensation
stainless
steel
304.
The
transition
from
Wenzel
to
Cassie-Baxter
or
impregnated
regimes
is
investigated.
Understanding
this
critical
for
advancing
surface
engineering,
as
it
enables
precise
control
over
various
applications.
Herein,
we
report
wire
EDM
(wEDM)
machining
304
produce
two
distinct
microstructure
patterns
with
directional
canals
pyramidal
structure,
their
performance
in
condensation.
These
significantly
performance.
wEDM
employed
create
roughness,
followed
phosphoric
acid
treatment
trichloro-1H,1H,2H,2H-perfluorooctyl
silane.
Contact
angle
measurements
reveal
a
synergistic
effect
between
groove
direction
silane
coating,
leading
hydrophobic
surfaces
dropwise
Specimens
exhibit
contact
150°,
while
specimens
structures
151
o
.
Roll-off
experiments
showcased
among
featuring
structures.
notably
lower
roll-off
angles
compared
both
flat
those
patterns,
dependence
orientation
canals.
In
humid
environments,
micromachined
superior
capability
untreated
SS304
surfaces.
Chemically
functionalized
grooved
present
larger
condensate
droplet
diameters
than
An
enhancement
sevenfold
higher
latent
heat
transfer
coefficient
reported.
achieve
corrosion
protection
an
efficiency
reaching
82.9%.
Metals,
Journal Year:
2023,
Volume and Issue:
13(7), P. 1268 - 1268
Published: July 14, 2023
Metastable
austenitic
stainless
steels
(MASS)
are
widely
used
in
various
industrial
applications
due
to
their
exceptional
compromise
between
mechanical
properties
and
corrosion
resistance.
However,
the
of
these
materials
can
be
further
enhanced
by
surface
treatments.
This
paper
reviews
treatment
methodologies
improve
MASS,
with
particular
attention
laser
The
effects
treatments
on
microstructure
chemical
composition
thermal
affected
zone
MASS
discussed,
impact
material’s
properties,
such
as
hardness,
tensile
strength,
fatigue
life,
investigated
detail.
Additionally,
highlights
limitations
points
out
some
areas
where
research
is
needed.
findings
presented
guide
selection
appropriate
techniques
for
specific
applications,
ultimately
improving
performance
lifespan
settings.