Research Square (Research Square),
Journal Year:
2024,
Volume and Issue:
unknown
Published: Aug. 1, 2024
Abstract
This
work
examines
the
vibration
characteristics
of
a
sandwich
nanosensor
plate.
The
plate
comprises
core
material
nickel
foams,
with
zinc
oxide
layers
on
top
and
bottom
rim
layer
reinforced
graphene.
study
takes
into
account
surface
effect.
employed
innovative
sinusoidal
higher-order
deformation
theory
nonlocal
strain
gradient
elasticity
theory.
Hamilton's
principle
obtained
equations
governing
motion
nanoplate.
Navier
method
was
to
solve
these
equations.
consists
three
different
foam
variants:
uniform
model
two
symmetric
models.
focused
analyzing
nanoplate's
dimensionless
fundamental
natural
frequencies.
investigation
examined
impact
types
foam,
volumetric
ratio
graphene,
variations
in
temperature,
factors,
void,
electric
potential.
Additionally,
effect
presence
or
absence
effects
nanoplate
non-dimensional
frequencies
analyzed.
Within
this
context,
it
established
that
buckling
temperature
exhibited
an
estimated
increase
0.7%
due
research
is
expected
produce
useful
discoveries
concerning
developing
applying
nanosensors,
transducers,
nanoelectromechanical
systems
designed
function
high-temperature
conditions.
It
has
been
noted
can
be
diminished
by
increasing
stiffness
supporting
layers.