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在“
Elsevier电子期刊
”中,
命中:
8,559
条,耗时:0.0309836 秒
在所有数据库中总计命中:
18,309
条
1.
Comparative study on small fatigue
crack
propagation
between Fe-30Mn-3Si-3Al and Fe-23Mn-0.5C twinning-induced plasticity steels: Aspects of non-
propagation
of small fatigue
crack
s
作者:
Motomichi Koyama
a
;
koyama@mech.kyushu-u.ac.jp" class="auth_mail" title="E-mail the corresponding author
;
Yusuke Yamamura
a
;
Rinqing Che
a
;
Takahiro Sawaguchi
b
;
Kaneaki Tsuzaki
a
;
Hiroshi Noguchi
a
关键词:
Non-
propagation
of small fatigue
crack
s
;
Dynamic strain aging
;
Austenitic steel
;
High cycle fatigue
;
Optical microscopy
刊名:International Journal of Fatigue
出版年:2017
2.
Micro-morphology of Fatigue
Crack
Initiation and
Propagation
Behavior in High Strength Aluminum Alloy
作者:
Haigen Jian
a
;
b
;
Jian Luo
a
;
Ling Ou
a
;
Xianmin Tang
a
;
tangxianmin@hut.edu.cn
;
Cheng Yan
b
关键词:
High strength aluminum alloy
;
Crack
propagation
;
Crack
deflection
;
Bridge connectivity
刊名:Materials Science and Engineering: A
出版年:2017
3.
The role of δ phase for fatigue
crack
propagation
behavior in a Ni base superalloy at room temperature
作者:
Jinlan An
;
Lei Wang
;
wanglei@mail.neu.edu.cn
;
Yang Liu
;
Wenliang Cai
;
Xiu Song
关键词:
δ phase
;
Fatigue
crack
propagation
behavior
;
Ni base superalloy
;
Microstructure characteristics
刊名:Materials Science and Engineering: A
出版年:2017
4.
Propagation
of surface initiated rolling contact fatigue
crack
s in bearing steel
作者:
Pawel Rycerz
;
Andrew Olver
;
Amir Kadiric
;
a.kadiric@imperial.ac.uk
关键词:
Rolling contact fatigue
;
Pitting
;
Crack
propagation
;
Rolling bearings
;
Flaking
刊名:International Journal of Fatigue
出版年:2017
5.
Effect of twin boundary on
crack
propagation
behavior in magnesium binary alloys; Experimental and calculation studies
作者:
Hidetoshi Somekawa
a
;
somekawa.hidetoshi@nims.go.jp
;
Tomohito Tsuru
b
;
c
;
tsuru.tomohito@jaea.go.jp
关键词:
Magnesium alloy
;
Twin boundary
;
Solute atom
;
First-principles
;
Crack
propagation
刊名:Scripta Materialia
出版年:2017
6.
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
7.
Finite element modeling of concrete cover
crack
propagation
due to non-uniform corrosion of reinforcement
作者:
Juhui Zhang
a
;
zhjhui@usst.edu.cn
;
Xiaozheng Ling
a
;
Zhongguo Guan
b
关键词:
Chloride
;
Finite element method
;
Non-uniform corrosion
;
Crack
ing
propagation
;
Damaged plasticity
;
RC structures
刊名:Construction and Building Materials
出版年:2017
8.
In situ fretting fatigue
crack
propagation
analysis using synchrotron X-ray radiography
作者:
A. de Pannemaecker
a
;
b
;
J.Y. Buffiere
b
;
S. Fouvry
a
;
siegfried.fouvry@ec-lyon.fr
;
O. Graton
a
关键词:
Fretting fatigue
;
Crack
growth
propagation
;
In situ tests
;
Synchrotron
;
Radiography
刊名:International Journal of Fatigue
出版年:2017
9.
Fatigue
crack
propagation
analysis for multiple weld toe
crack
s in cut-out fatigue test specimens from a girth welded pipe
作者:
John H.L. Pang
a
;
b
;
Hsin Jen Hoh
a
;
b
;
hjhoh@ntu.edu.sg" class="auth_mail" title="E-mail the corresponding author
;
Kin Shun Tsang
a
;
b
;
Jason Low
c
;
Shawn Caleb Kong
c
;
Wen Guo Yuan
c
关键词:
Crack
closure
;
Fatigue
;
Multiple
crack
s
;
Recharacterization
;
Welded structures
刊名:International Journal of Fatigue
出版年:2017
10.
Evaluation of
crack
propagation
behaviors in a T-shaped tubular joint employing tetrahedral FE modeling
作者:
Kazuhisa Yagi
a
;
e
;
k-yagi@sanoyas.co.jp
;
Satoyuki Tanaka
b
;
satoyuki@hiroshima-u.ac.jp
;
Takahiro Kawahara
b
;
m146691@hiroshima-u.ac.jp
;
Kanta Nihei
c
;
nihei_kanta@khi.co.jp
;
Hiroshi Okada
d
;
hokada@rs.noda.tus.ac.jp
;
Naoki Osawa
e
;
osawa@naoe.eng.osaka-u.ac.jp
关键词:
Tubular joint
;
Fracture mechanics
;
Crack
propagation
simulation
;
Finite elements
;
Fatigue testing
刊名:International Journal of Fatigue
出版年:2017
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