Impact of SWCNTs and CMCS on efficacy of anastomosis and optical properties in vivo during laser biological tissue soldering
Yuxin Chen,
No information about this author
Kehong Wang,
No information about this author
Xiaopeng Li
No information about this author
et al.
Optics & Laser Technology,
Journal Year:
2024,
Volume and Issue:
176, P. 110869 - 110869
Published: March 28, 2024
Language: Английский
Mechanical performance and durability attributes of biodegradable natural fibre-reinforced composites—a review
Deleted Journal,
Journal Year:
2024,
Volume and Issue:
19(1)
Published: Dec. 26, 2024
Abstract
With
the
rising
awareness
about
impact
of
excessive
urbanization
on
environment,
alternative
and
more
eco-friendly
materials
such
as
natural
fibre-reinforced
composites
(NFRCs),
which
have
lower
embodied
energy,
can
be
considered
in
modern
application
ranging
from
construction
housing
to
urban
infrastructures
order
promote
concept
sustainable
development.
One
current
challenges
faced
by
material
engineers
is
develop
NFRCs
with
optimized
durability
performance
correspond
high
mechanical
attributes
during
their
service
lifetime
while
possessing
satisfactory
degradability
trait
disposal
phase.
This
proposed
review
study
principally
covered
state-of-the-art
progress
made
development
composite
advanced
biodegradable
NFRC.
In
first
section,
key
aspects
NFRC
fabrication
including
fibres
matrix
selection,
property-enhancing
treatment
for
influence
nanostructures
composites.
second
phase
this
review,
fibre-matrix
interaction
corresponding
physical
were
discussed.
The
typical
failure
modes
observed
outlined
means
improve
facture
toughness
proposed.
Finally,
third
section
comprised
degradation
assessment
components
NFRCs,
namely
fibre
reinforcement,
interface
sections.
Additionally,
disposing
similar
environment
was
assessed,
present-day
recycling
techniques
Further
research
performance,
traits
enumerated
will
unquestionably
use
integration
into
a
wider
range
engineering
applications
our
society.
Language: Английский
Electrical properties of bionanocomposites
Ankita Meher,
No information about this author
Shantanu Bhattacharyya,
No information about this author
Suresh Sagadevan
No information about this author
et al.
Elsevier eBooks,
Journal Year:
2024,
Volume and Issue:
unknown, P. 183 - 206
Published: Aug. 23, 2024
A simplified approach for predicting last ply failure load of VO-notched laminated composite components
Journal of Reinforced Plastics and Composites,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Sept. 9, 2024
In
this
study,
the
last
ply
failure
(LPF)
load
of
composite
laminates
with
VO-notches
under
pure
mode
I
and
mixed
I/II
was
investigated
experimentally,
analytically,
numerically.
The
efficiency
virtual
isotropic
material
concept
(VIMC)
in
combination
a
new
combined
criterion
also
evaluated.
J-integral
average
strain
energy
density
criteria
were
VIMC.
Using
analytical
expressions
for
(ASED),
prediction
fracture
notched
components
simplified
expedited.
experimental
loads
specimens
determined
quasi-isotropic
cross-ply
I/II.
predicted
using
ASED,
VIMC-ASED
VIMC-J-integral
demonstrated
good
accuracy
predicting
LPF,
highest
I,
slightly
reduced
VIMC,
energy-based
criteria,
effectively
predicts
load.
use
further
expedited
process
without
losing
accuracy,
making
it
practical
approach
engineering
applications.
Additionally,
significantly
reduces
time
cost
associated
extensive
testing.
Language: Английский
Сhecking the possibilities of the classic technology of chemical metalization of polymer granules
Chemistry Technology and Application of Substances,
Journal Year:
2023,
Volume and Issue:
6(1), P. 148 - 153
Published: June 1, 2023
The
possibility
of
obtaining
metallized
granules
high-tonnage
polymers
using
classical
metallization
technology
was
studied.
It
is
shown
that
this
not
effective
during
the
polyethylene
and
polypropylene.
Certain
positive
points
were
achieved
only
in
case
polyvinyl
chloride
granules.
established
treatment
with
etching
agents
different
nature
does
lead
to
a
significant
change
surface
properties,
which
can
explain
low
efficiency
polyethylene,
polypropylene
Language: Английский