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在“
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命中:
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在所有数据库中总计命中:
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条
1.
Martensitic transformations and the
shape
memory
effect in Ti-Zr-Nb-Al high-temperature
shape
memory
alloys
作者:
Fei Zhang
a
;
b
;
Zhiguo Yu
a
;
b
;
Chengyang Xiong
a
;
b
;
Wentao Qu
c
;
Bifei Yuan
c
;
Zhenguo Wang
a
;
b
;
Yan Li
a
;
b
;
liyan@buaa.edu.cn" class="auth_mail" title="E-mail the corresponding author
关键词:
Shape
memory
;
Microstructure
;
Mechanical properties
;
Martensitic transformation
;
Ti-Zr
刊名:Materials Science & Engineering A
出版年:2017
2.
Superelasticity and
shape
memory
effect in Cu-Al-Mn-V
shape
memory
alloys
作者:
Shuiyuan Yang
;
yangshuiyuan@xmu.edu.cn
;
Fan Zhang
;
Jialin Wu
;
Yong Lu
;
Zhan Shi
;
Cuiping Wang
;
Xingjun Liu
关键词:
Microstructure
;
Superelasticity
;
Stress-induced martensite
;
Stabilization
;
Shape
memory
effect
刊名:Materials & Design
出版年:2017
3.
High-pressure torsion driven phase transformations in Cu-Al-Ni
shape
memory
alloys
作者:
B.B. Straumal
a
;
b
;
c
;
straumal@issp.ac.ru
;
A.R. Kilmametov
a
;
d
;
G.A. Ló
;
pez
e
;
I. Ló
;
pez-Ferreñ
;
o
f
;
M.L. Nó
;
e
;
J. San Juan
f
;
H. Hahn
a
;
B. Baretzky
a
关键词:
High-pressure torsion
;
Precipitation
;
Decomposition
;
Phase transitions
;
Shape
memory
alloys
刊名:Acta Materialia
出版年:2017
4.
Alloying effects of Ga on the Co-V-Si high-temperature
shape
memory
alloys
作者:
Hengxing Jiang
a
;
b
;
Cuiping Wang
a
;
b
;
Weiwei Xu
c
;
Xiao Xu
d
;
Shuiyuan Yang
a
;
b
;
Ryosuke Kainuma
d
;
Xingjun Liu
a
;
b
;
lxj@xmu.edu.cn
关键词:
Martensitic transformation
;
Thermal cycle stability
;
Microstructure evolution
;
Mechanical property
;
High-temperature
shape
memory
alloys
(HTSMA)
刊名:Materials & Design
出版年:2017
5.
An informatics approach to transformation temperatures of NiTi-based
shape
memory
alloys
作者:
Dezhen Xue
a
;
b
;
;
Deqing Xue
a
;
xuedezhen@xjtu.edu.cn
;
Ruihao Yuan
a
;
Yumei Zhou
a
;
Prasanna V. Balachandran
b
;
Xiangdong Ding
a
;
Jun Sun
a
;
Turab Lookman
b
;
txl@lanl.gov
关键词:
Material informatics
;
Machine learning
;
Regression
;
Shape
memory
alloys
;
Transformation temperature
刊名:Acta Materialia
出版年:2017
6.
Kinetic modelling of thermophysical properties of
shape
memory
alloys
during phase transformation
作者:
Han Fang
;
Bill Wong
;
bill.wong@monash.edu
;
Yu Bai
关键词:
Phase transformation
;
Specific heat capacity
;
Shape
memory
alloys
;
Linearity method
;
Specific heat capacity model
;
Heating rate
刊名:Construction and Building Materials
出版年:2017
7.
A unique “fishtail-like” four-way
shape
memory
effect of compositionally graded NiTi
作者:
Qinglin Meng
a
;
Zhigang Wu
a
;
gordon.wu@uwa.edu.au" class="auth_mail" title="E-mail the corresponding author
;
Reza Bakhtiari
a
;
Bashir S. Shariat
a
;
Hong Yang
a
;
Yinong Liu
a
;
yinong.liu@uwa.edu.au" class="auth_mail" title="E-mail the corresponding author
;
Tae-hyun Nam
b
关键词:
Shape
memory
alloy (SMA)
;
Functionally graded materials (FGM)
;
Two-way
shape
memory
effect
刊名:Scripta Materialia
出版年:2017
8.
Evolution of macroscopic elastic moduli of martensitic polycrystalline NiTi and NiTiCu
shape
memory
alloys
with pseudoplastic straining
作者:
Martina Thomasová
;
a
;
Hanu&scaron
;
Seiner
b
;
hseiner@it.cas.cz" class="auth_mail" title="E-mail the corresponding author
;
Petr Sedlá
;
k
b
;
Miroslav Frost
b
;
Martin &Scaron
;
evčí
;
k
b
;
Ivo Szurman
c
;
Radim Kocich
c
;
Jan Drahokoupil
d
;
Petr &Scaron
;
ittner
d
;
Michal Landa
b
关键词:
Shape
memory
alloys
;
Polycrystals
;
Elastic behavior
;
Martensitic phase transformation
;
Resonant ultrasound spectroscopy
刊名:Acta Materialia
出版年:2017
9.
Effect of the thermomechanical coupling on fatigue crack propagation in NiTi
shape
memory
alloys
作者:
Yajun You
a
;
Yahui Zhang
b
;
Ziad Moumni
a
;
b
;
ziad.moumni@ensta-paristech.fr
;
Gunay Anlas
c
;
anlas@boun.edu.tr
;
Weihong Zhang
a
关键词:
Shape
memory
alloys
;
Fatigue
;
Loading frequency
;
Crack propagation
;
Thermo-mechanical coupling
刊名:Materials Science and Engineering: A
出版年:2017
10.
Shape
memory
functionality under multi-cycles in NiTiHf
作者:
H. Sehitoglu
a
;
huseyin@illinois.edu
;
Y. Wu
a
;
L. Patriarca
a
;
b
关键词:
Functional fatigue
;
NiTiHf
;
Shape
memory
effect
;
High temperature
shape
memory
alloy
刊名:Scripta Materialia
出版年:2017
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