Mechanics of Advanced Materials and Structures,
Год журнала:
2024,
Номер
unknown, С. 1 - 26
Опубликована: Ноя. 12, 2024
This
article
presents
a
comprehensive
multi-field
analysis
on
the
of
hybrid
sandwich
curved
shell
composed
metal
matrix
core
reinforced
with
tunable
three-dimensional
origami-enabled
reinforcement.
The
characteristics
and
governing
equations
are
derived
using
energy-based
formulation
minimization
process.
modeling
is
performed
accounting
multi-loading
structures
as
an
attachment.
characterized
material
properties
evaluated
experimental
statistical-based
in
science
works.
stress
strain
analyses
composite
presented
changes
volume
fraction
foldability
parameters
well
multi-filed
loading
along
thickness
direction.
These
materials
can
be
used
electromechanical
systems
structures.
Mechanics of Advanced Materials and Structures,
Год журнала:
2024,
Номер
unknown, С. 1 - 16
Опубликована: Авг. 4, 2024
Bending
responses
of
a
nanocomposite-reinforced
cylindrical
panel
are
studied
in
this
article.
A
shell
is
assumed
micro
scale
and
sandwiched
by
piezoelectric
layers.
In
article,
micro-size
dependent
theory
named
as
the
modified
couple
stress
(MCST)
analytically
employed
kinematic
relations
extended
through
employing
shear
deformable
model
order
to
investigate
electroelastic
bending
three-layered
micro-shell
bonded
between
smart
layers
subjected
an
applied
voltage,
external
internal
pressures.
The
rested
on
two
parametrically
elastic
foundation.
develop
constitutive
relations,
mixture's
rule
well
Halpin-Tsai
utilized
compute
governing
equations.
Electroelastostatic
obtained
trigonometric
functions.
large
parametric
analysis
presented
explore
deflection
with
change
thickness
layer
radius,
length
radius
ratio,
different
characteristics
nanoplatelet
reinforcement
for
both
pressure.
proposed
composite
electromechanical
structure
may
be
used
structures
systems.
controllable
system
can
suggested
usage
graphene
nanoplatelets
because
flexibility
affecting
parameters.
Mechanics of Advanced Materials and Structures,
Год журнала:
2024,
Номер
unknown, С. 1 - 15
Опубликована: Июль 8, 2024
Foldability
capacity
is
now
introduced
as
a
novel
nanofiller
reinforcement
production
procedure
using
some
operation
to
control
the
mechanical,
thermal
and
electrical
properties
in
sport
equipment.
Application
of
this
type
nanofillers
curved
structures
like
pole
vault
shell
leads
engineering
shape
structures.
This
article
organized
suggest
vibration-based
formulation
for
analysis
folded
reinforced
structure
subjected
mechanical
loading.
Using
computation
kinetic,
strain
external
energies,
one
can
arrive
motion's
equations
minimization
total
energy
Hamilton's
principle.
solution
through
an
analytical
approach,
parametric
presented.
The
verified
test
presented
confirmation
trend
results.
Mechanics of Advanced Materials and Structures,
Год журнала:
2024,
Номер
unknown, С. 1 - 14
Опубликована: Июнь 25, 2024
This
article
investigates
effect
of
a
higher
order
kinematic
modeling
on
the
elasto-static
bending
results
shell
in
double
curved
form.
The
graphene
origami
is
introduced
this
as
novel
nanofiller
with
some
chemical
process
to
arrive
at
controllable
material.
A
copper
matrix
used
main
constituent
reinforced
folded
origami.
virtual
work
principle
derive
governing
equations
thickness-stretchable
shell.
After
derivation
and
solution,
class
formulas
from
valid
sources
for
effective
material
properties
verification
test
presented
before
exploring
all
affecting
parameters
ambient
results.
may
be
analysis
structures
responses.
Mechanics of Advanced Materials and Structures,
Год журнала:
2024,
Номер
unknown, С. 1 - 19
Опубликована: Июнь 19, 2024
Graphene
origami
in
a
copper
matrix
is
used
as
composition
of
core
sandwich
panel
between
two
piezoelectric/piezomagnetic
layers.
More
accurate
modeling
the
composite
structure
performed
using
higher-order
model
including
thickness
stretching
term.
Principle
virtual
work
order
to
derive
governing
equations
terms
resultant
components
force
and
moment
well
electromagnetic
loads.
The
are
derived
framework
with
accounting
electric
magnetic
potentials
effective
material
properties
graphene
Halpin-Tsai
rule
mixture
framework.
deformation/strain/stress
analytically
obtained
thermal,
mechanical,
electrical,
loads
folding
degree
content
origami.
Verification
for
justification
numerical
results.
A
foldability
dependent
parametric
analysis
presented
show
controllability
stress,
strain
deformations
along
direction.