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内部出版物
SpringerLink电子期刊(5)
Elsevier电子期刊(47)
在“
Elsevier电子期刊
”中,
命中:
47
条,耗时:0.049976 秒
在所有数据库中总计命中:
52
条
1.
Study of
creep
crack
growth
in a modified 9Cr-1Mo steel weld metal and heat affected zone
作者:
Yatindra Kumar
;
yatindra@igcar.gov.in" class="auth_mail" title="E-mail the corresponding author
;
S. Venugopal
;
G. Sasikala
;
Shaju K Albert
;
A.K. Bhaduri
关键词:
Creep
crack
growth
(
CCG
)
;
P91 steel weld
;
C* parameter
;
Creep
cavitation
刊名:Materials Science & Engineering A
出版年:2016
2.
Unified correlation of in-plane and out-of-plane
creep
constraints with
creep
crack
growth
rate
作者:
Hongshun Ma
;
Guozhen Wang
;
gzwang@ecust.edu.cn" class="auth_mail" title="E-mail the corresponding author
;
Fuzhen Xuan
;
Shantung Tu
关键词:
In-plane constraint
;
Out-of-plane constraint
;
Creep
crack
growth
rate
;
Equivalent
creep
strain
;
Unified correlation
;
Specimens
刊名:International Journal of Pressure Vessels and Piping
出版年:2016
3.
Characterization of 3-D
creep
constraint and
creep
crack
growth
rate in test specimens in ASTM-E1457 standard
作者:
J.Z. He
;
G.Z. Wang
;
gzwang@ecust.edu.cn" class="auth_mail" title="E-mail the corresponding author
;
S.T. Tu
;
F.Z. Xuan
关键词:
Creep
constraint
;
Creep
crack
growth
rate
;
ASTM-E1457
;
Specimen geometry
;
Specimen size
刊名:Engineering Fracture Mechanics
出版年:2016
4.
Experimental investigation of
creep
crack
growth
behavior in nickel base superally by constant displacement loading method at elevated temperature
作者:
Rui Bao
;
Hao Liu
;
beihangliuhao@foxmail.com" class="auth_mail" title="E-mail the corresponding author
;
Songsong Lu
;
Chenyang Yue
;
Binjun Fei
关键词:
Displacement loading
;
Creep
crack
growth
;
Stress intensity factor
;
Elevated Temperature
;
Nickel base superalloy
刊名:Materials Science & Engineering A
出版年:2016
5.
In-plane and out-of-plane unified constraint-dependent
creep
crack
growth
rate of 316H steel
作者:
H.S. Ma
;
G.Z. Wang
;
gzwang@ecust.edu.cn" class="auth_mail" title="E-mail the corresponding author
;
S. Liu
;
S.T. Tu
;
F.Z. Xuan
关键词:
In-plane
creep
constraint
;
Out-of-plane
creep
constraint
;
Creep
crack
growth
rate
;
Specimen geometry
;
Equivalent
creep
strain
刊名:Engineering Fracture Mechanics
出版年:2016
6.
Effects of plastic pre-straining level on the
creep
deformation,
crack
initiation and
growth
behaviour of 316H stainless steel
作者:
Ali Mehmanparast
a
;
a.mehmanparast@cranfield.ac.uk" class="auth_mail" title="E-mail the corresponding author
;
Catrin M. Davies
b
;
David W. Dean
c
;
Kamran Nikbin
b
关键词:
Pre-straining level
;
Pre-compression
;
CCG
;
Creep
ductility
;
Long term
creep
;
316H
刊名:International Journal of Pressure Vessels and Piping
出版年:2016
7.
Unified Correlation of In-Plane and Out-of-Plane
Creep
Constraints with Creep
Crack
Growth
Rate
作者:
H.S. Ma
;
G.Z. Wang
;
gzwang@ecust.edu.cn" class="auth_mail" title="E-mail the corresponding author
;
F.Z. Xuan
;
S.-T. Tu
关键词:
In-plane constraint
;
out-of-plane constraint
;
creep
crack
growth
rate
;
equivalent
creep
strain
;
unified correlation
;
specimens
刊名:Procedia Engineering
出版年:2015
8.
Modelling damage and
creep
crack
growth
in structural ceramics at ultra-high temperatures
作者:
Michele Pettinà
;
a
;
m.pettina12@imperial.ac.uk" class="auth_mail
;
Farid Biglari
a
;
Andrew Heaton
b
;
Peter Brown
b
;
Kamran Nikbin
a
关键词:
Ultra-high temperature ceramics
;
Creep
crack
growth
;
Continuum damage modelling
;
Life assessment
;
Structural integrity
刊名:Journal of the European Ceramic Society
出版年:September 2014
9.
Prediction of
creep
crack
growth
behaviour in 316H stainless steel for a range of specimen geometries
作者:
Ali Mehmanparast
ali.mehmanparast@imperial.ac.uk" class="auth_mail
关键词:
Creep
crack
growth
;
CCG
;
Long term
;
Stress dependent ductility
;
316H
;
Specimen geometry
;
Finite element modelling
刊名:The International Journal of Pressure Vessels and Piping
出版年:August 2014
10.
Creep
crack
growth
in phosphorus alloyed oxygen free copper
作者:
Rui Wu
;
Rolf S
;
str?m
;
Lai-Zhe Jin
关键词:
Creep
crack
growth
;
Compact tension
;
Cavitation
;
Modelling
;
Phosphorus-alloyed oxygen-free copper
刊名:Materials Science and Engineering: A
出版年:2013
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2
3
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