A unified low cycle fatigue model of axial-loaded buckling-restrained Fe-SMA plates in high-performance metallic dampers
Xi-Yang Yu,
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Yanwen Li,
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Junxian Zhao
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et al.
Engineering Structures,
Journal Year:
2024,
Volume and Issue:
325, P. 119461 - 119461
Published: Dec. 9, 2024
Language: Английский
Post-fire mechanical behavior of iron-based shape memory alloy used for structural damping
Shuyang Dai,
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C.X. Li,
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Yueyue Gu
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et al.
Journal of Constructional Steel Research,
Journal Year:
2024,
Volume and Issue:
221, P. 108920 - 108920
Published: July 23, 2024
Language: Английский
Fe-SMA for enhancing both structural robustness and seismic resilience: A pioneering study
Zhe-Xi Zhang,
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Cheng Fang,
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Michael C.H. Yam
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et al.
Engineering Structures,
Journal Year:
2024,
Volume and Issue:
321, P. 118990 - 118990
Published: Sept. 23, 2024
Language: Английский
A Comparative Study on Force Deformation Behaviour of Fe and Cu-Based SMA with NiTi SMA
Materials science forum,
Journal Year:
2024,
Volume and Issue:
1133, P. 41 - 46
Published: Dec. 10, 2024
Ni-Ti-based
shape
memory
alloy
(SMA)
finds
extensive
applications,
yet
its
high
cost
presents
a
challenge.
As
cost-effective
alternative,
Fe
and
Cu-based
SMAs
have
gained
popularity.
In
this
context,
the
present
experimental
study
conducts
tensile
cyclic
tests
on
Ni-Ti,
Cu-Al-Ni,
Fe-Mn-Si
SMA
bars
to
compare
their
mechanical
behavior
assess
performance
regarding
stress-strain
response,
energy
dissipation
capacity,
residual
deformation.
The
test
results
show
that
Ni-Ti
Fe-based
exhibit
higher
yield
ultimate
stress,
as
well
failure
strain,
compared
SMA.
Moreover,
tension-compression
reveal
demonstrates
stable
hysteresis
loop
with
recovery
strain
SMAs.
These
findings
underscore
potential
of
combining
viable
alternative
material
for
smart
vibration
control
system
design
retrofitting
devices,
offering
capacity
larger
ductility
good
recentering
ability.
Language: Английский