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在“
Elsevier电子期刊
”中,
命中:
10,556
条,耗时:0.1169462 秒
在所有数据库中总计命中:
14,060
条
1.
A regulated boosting technique for
material
fatigue
property prognostics
作者:
De Z. Li
a
;
Derek.Li@emechsys.com
;
Wilson Wang
b
;
wwang3@lakeheadu.ca
;
Fathy Ismail
c
;
fmismail@uwaterloo.ca
关键词:
Material
fatigue
property prediction
;
Boosting technique
;
Ensemble learning
;
Overfitting
;
Time series forecast
刊名:Engineering Applications of Artificial Intelligence
出版年:2017
2.
Shear
fatigue
between asphalt pavement layers and its application in design
作者:
Xuancang Wang
a
;
Ziyuan Su
a
;
Aimin Xu
b
;
Aiguo Zhou
c
;
Haitao Zhang
d
;
zht6781@163.com
关键词:
Asphalt pavement
;
Interlayer treatment
;
Tack coat
material
;
Shear
fatigue
formula
;
Design
刊名:Construction and Building
Material
s
出版年:2017
3.
Effect of dissolved oxygen and temperature on
fatigue
crack growth rate behaviour of SA312 Type 304L(N)
material
in water environment
作者:
Punit Arora
;
punit@barc.gov.in
;
P.K. Singh
;
V. Bhasin
;
A. Rama Rao
关键词:
Fatigue
crack growth rate
;
Stress intensity factor range
;
Dissolved oxygen
;
Striations
;
Deformation induced martensite
刊名:International Journal of
Fatigue
出版年:2017
4.
Fatigue
properties of ceramic hollow sphere filled aluminium matrix syntactic foams
作者:
Bá
;
lint Katona
a
;
Gá
;
bor Szebé
;
nyi
b
;
c
;
Imre Norbert Orbulov
a
;
c
;
orbulov@eik.bme.hu" class="auth_mail" title="E-mail the corresponding author
;
orbulov@gmail.com" class="auth_mail" title="E-mail the corresponding author
关键词:
Mechanical characterization
;
Composites
;
Porous
material
s
;
Fatigue
刊名:
Material
s Science & Engineering A
出版年:2017
5.
Modeling of path-dependent multi-axial
fatigue
damage in aluminum alloys
作者:
Jifa Mei
1
;
Pingsha Dong
;
2
;
dongp@umich.edu
关键词:
Multi-axial
fatigue
;
Wrought aluminum alloys
;
Non-proportional loading
;
Fatigue
damage modeling
;
Damage parameter
;
Material
sensitivity
;
Cycle counting
刊名:International Journal of
Fatigue
出版年:2017
6.
A comparison of
fatigue
strength sensitivity to defects for
material
s manufactured by AM or traditional processes
作者:
S. Beretta
;
stefano.beretta@polimi.it" class="auth_mail" title="E-mail the corresponding author
;
S. Romano
关键词:
Additive manufacturing
;
AlSi10Mg
;
Ti-6Al-4V
;
Fatigue
limit
;
ΔKthΔKth
;
Short cracks
刊名:International Journal of
Fatigue
出版年:2017
7.
Mechanical behavior and
fatigue
performance of austenitic stainless steel under consideration of martensitic phase transformation
作者:
Wu Zeng
a
;
Huang Yuan
b
;
yuan.huang@tsinghua.edu.cn" class="auth_mail" title="E-mail the corresponding author
关键词:
Strain-induced phase transformation
;
Martensitic phase
;
Plasticity modeling
;
Fatigue
damage
;
Fatigue
life
刊名:
Material
s Science & Engineering A
出版年:2017
8.
High cycle
fatigue
of ARMCO iron severely deformed by ECAP
作者:
Jairo Alberto Muñ
;
oz
a
;
jairo.alberto.munoz@upc.edu
;
Oscar Fabiá
;
n Higuera
a
;
b
;
oscarhiguera@mail.uniatlantico.co
;
José
;
Marí
;
a Cabrera
a
;
jose.maria.cabrera@upc.edu
关键词:
High-Cycle
Fatigue
(HCF)
;
S-N curve
;
Fatigue
limit
;
Inverse Polo Figure (IPF)
;
Orientation Distribution Function (ODF)
刊名:
Material
s Science and Engineering: A
出版年:2017
9.
Cohesive zone and level set method for simulation of high cycle
fatigue
delamination in composite
material
s
作者:
Ahmad Amiri-Rad
a
;
a.amirirad@me.iut.ac.ir
;
Mohammad Mashayekhi
a
;
Frans P. van der Meer
b
关键词:
Cohesive zone method
;
Level set method
;
Fatigue
;
Delamination
;
Fracture mechanics
刊名:Composite Structures
出版年:2017
10.
Fatigue
life of additively manufactured Ti-6Al-4V in the very high cycle
fatigue
regime
作者:
J. Gü
;
nther
a
;
D. Krewerth
a
;
T. Lippmann
a
;
S. Leuders
b
;
T. Trö
;
ster
b
;
A. Weidner
a
;
H. Biermann
a
;
T. Niendorf
a
;
c
;
niendorf@uni-kassel.de" class="auth_mail" title="E-mail the corresponding author
关键词:
Selective laser melting
;
Selective electron beam melting
;
Titanium
;
Very high cycle
fatigue
;
Failure
刊名:International Journal of
Fatigue
出版年:2017
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