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Elsevier电子期刊(1408)
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NATURE电子期刊(8)
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在“
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”中,
命中:
1,408
条,耗时:小于0.01 秒
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1,793
条
1.
Effect of welding processes on microstructural and mechanical properties of dissimilar weldments between conventional
austenitic
and high nitrogen
austenitic
stainless
steels
作者:
Himanshu Vashishtha
vashishtha.himanshu100593@gmail.com
;
Ravindra V. Taiwade
;
rvtaiwadevnit@gmail.com
;
Sumitra Sharma
sumitra.aec21@gmail.com
;
Awanikumar P. Patil
appatil14@gmail.com
关键词:
High nitrogen
austenitic
stainless
steel
;
Electron microscope coupled with EDS
;
X-ray diffraction
;
Grain boundary precipitation and cooling rate
刊名:Journal of Manufacturing Processes
出版年:2017
2.
Phase transformation system of
austenitic
stainless
steels
obtained by permanent compressive strain
作者:
Mitsuhiro Okayasu
;
mitsuhiro.okayasu@utoronto.ca
;
Sai Tomida
关键词:
Stainless
steel
;
Austenite
;
Strain-induced martensite
;
Model
;
Microstructure
刊名:Materials Science and Engineering: A
出版年:2017
3.
Solidification mechanism of
austenitic
stainless
steels
solidified with primary ferrite
作者:
Hiroshige Inoue
a
;
h-inoue@jwri.osaka-u.ac.jp
;
Toshihiko Koseki
b
;
koseki@material.t.u-tokyo.ac.jp
关键词:
Solidification
;
Welding
;
Austenitic
stainless
steel
;
Primary ferrite
;
Crystallographic orientation relationship
刊名:Acta Materialia
出版年:2017
4.
Synergy between molybdenum and nitrogen on the pitting corrosion and passive film resistance of
austenitic
stainless
steels
as a pH-dependent effect
作者:
Carole Loable
a
;
b
;
c
;
carole.loable@lepmi.grenoble-inp.fr
;
Isadora N. Viç
;
osa
a
;
b
;
inogueira@poli.ufrj.br
;
Thiago J. Mesquita
d
;
1
;
Thiago.mesquita@total.com
;
Marc Mantel
d
;
f
;
g
;
Marc.Mantel@ugitech.com
;
Ricardo P. Nogueira
a
;
b
;
e
;
rnogueira@pi.ac.ae
;
Gregory Berthomé
;
f
;
g
;
gregory.berthome@simap.grenoble-inp.fr
;
Eric Chauveau
e
;
eric.chauveau@ugitech.fr
;
Virginie Roche
a
;
b
;
virginie.roche@lepmi.grenoble-inp.fr
关键词:
Pitting corrosion
;
Stainless
steel
;
Molybdenum
;
Nitrogen
刊名:Materials Chemistry and Physics
出版年:2017
5.
Impact of the nanostructuration on the corrosion resistance and hardness of irradiated 316
austenitic
stainless
steels
作者:
E. Hug
a
;
eric.hug@ensicaen.fr" class="auth_mail" title="E-mail the corresponding author
;
R. Prasath Babu
b
;
d
;
I. Monnet
c
;
A. Etienne
d
;
F. Moisy
c
;
V. Pralong
a
;
N. Enikeev
e
;
f
;
M. Abramova
e
;
X. Sauvage
d
;
B. Radiguet
d
关键词:
Stainless
steel
;
Nanostructured grains
;
Irradiation resistance
;
High pressure torsion
;
Corrosion resistance
刊名:Applied Surface Science
出版年:2017
6.
Effect of welding processes and conditions on the microstructure, mechanical properties and corrosion resistance of duplex
stainless
steel weldments—A review
作者:
Jagesvar Verma
jageshwarverma28@gmail.com
;
Ravindra Vasantrao Taiwade
;
rvtaiwadevnit@gmail.com
关键词:
Dissimilar welding
;
Duplex
stainless
steels
;
Heat input
;
Welding conditions
刊名:Journal of Manufacturing Processes
出版年:2017
7.
Modified Ni equivalent for evaluating hydrogen susceptibility of Cr-Ni based
austenitic
stainless
steels
作者:
Jee-Hyun Kang
a
;
Han-Seop Noh
a
;
Kwang-Min Kim
b
;
Soo Chan Lee
b
;
Sung-Joon Kim
a
;
sjkim1@postech.ac.kr
关键词:
Austenite
;
Stainless
steel
;
Ni equivalent
;
Hydrogen embrittlement
;
Martensitic transformation
刊名:Journal of Alloys and Compounds
出版年:2017
8.
Deep rolling effect on fatigue behavior of
austenitic
stainless
steels
作者:
J. Muñ
;
oz-Cubillos
;
jonnathan.munoz.cubillos@correounivalle.edu.co
;
J.J. Coronado
;
S.A. Rodrí
;
guez
关键词:
Deep rolling
;
Austenitic
stainless
steel
;
Fatigue strength
;
AISI 304
;
AISI 316
刊名:International Journal of Fatigue
出版年:2017
9.
Influence of frequency and wave form on S-N fatigue of commercial
austenitic
stainless
steels
with different nickel contents in inert gas and in high pressure gaseous hydrogen
作者:
Thorsten Michler
a
;
thorsten.dr.michler@de.opel.com
;
Jö
;
rg Naumann
b
;
joerg.naumann@bmw.de
;
Jens Wiebesiek
b
;
jens.wiebesiek@bmw.de
;
Erich Sattler
c
;
erich.sattler@mpa-uni-stuttgart.de
关键词:
Austenitic
stainless
steel
;
Hydrogen embrittlement
;
Fatigue life
;
Frequency effect
刊名:International Journal of Fatigue
出版年:2017
10.
Elucidating microstructural evolution and strengthening mechanisms in nanocrystalline surface induced by surface mechanical attrition treatment of
stainless
steel
作者:
Sumit Bahl
a
;
Satyam Suwas
a
;
Tamà
;
s Ungà
;
r
b
;
Kaushik Chatterjee
a
;
kchatterjee@materials.iisc.ernet.in" class="auth_mail" title="E-mail the corresponding author
关键词:
Surface mechanical attrition treatment
;
Severe plastic deformation
;
Stainless
steel
;
Nanocrystalline
;
Dislocations
;
Strengthening mechanisms
刊名:Acta Materialia
出版年:2017
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