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在“
Elsevier电子期刊
”中,
命中:
164
条,耗时:小于0.01 秒
在所有数据库中总计命中:
934
条
1.
Investigations on the microstructure, tensile strength and high temperature corrosion behaviour of
Inconel
625
and Inconel 718 dissimilar joints
作者:
K. Devendranath Ramkumar
a
;
deva@vit.ac.in
;
ramdevendranath@gmail.com
;
Winston Sunny Abraham
a
;
Vedha Viyash
a
;
N. Arivazhagan
a
;
Arul Maximus Rabel
b
关键词:
Inconel
625
;
Inconel
718
;
Welding
;
Microstructure
;
High temperature corrosion
;
Mechanical properties
刊名:Journal of Manufacturing Processes
出版年:2017
2.
Microstructure evolution of
Inconel
625
with 0.4 wt% boron modification during gas tungsten arc deposition
作者:
Y. Tian
a
;
B. Ouyang
a
;
A. Gontcharov
b
;
R. Gauvin
a
;
P. Lowden
b
;
M. Brochu
a
;
mathieu.brochu@mcgill.ca
关键词:
Inconel
625
;
Gas tungsten arc deposition
;
Microstructure
;
Re-melting
;
Segregation
刊名:Journal of Alloys and Compounds
出版年:2017
3.
Microscale effect of high-temperature exposition on laser cladded
Inconel
625
-Cr
3
C
2
metal matrix composite
作者:
D. Verdi
;
davide.verdi@urjc.es
;
M.A. Garrido
;
C.J. Mú
;
nez
;
P. Poza
关键词:
Metal matrix composite
;
Inconel
625
;
Laser cladding
;
Depth sensing indentation
;
Scanning electron microscopy
;
Transmission electron microscopy
刊名:Journal of Alloys and Compounds
出版年:2017
4.
Electrochemical behavior of laser shock peened
Inconel
625
superalloy
作者:
D. Karthik
a
;
S. Arul Xavier Stango
b
;
U. Vijayalakshmi
b
;
S. Swaroop
a
;
n.r.sathya.swaroop@gmail.com
关键词:
Inconel
625
;
Laser peening without coating
;
Residual stress
;
Hardness
;
Roughness
;
Electrochemical behavior
刊名:Surface and Coatings Technology
出版年:2017
5.
Effect of heat treatment on microstructure evolution and mechanical properties of
Inconel
625
with 0.4 wt% boron modification fabricated by gas tungsten arc deposition
作者:
Y. Tian
a
;
A. Gontcharov
b
;
R. Gauvin
a
;
P. Lowden
b
;
M. Brochu
a
;
mathieu.brochu@mcgill.ca
关键词:
Gas tungsten arc deposition
;
Nickel-based superalloys
;
Inconel
625
;
Microstructure evolution
;
Mechanical properties
刊名:Materials Science and Engineering: A
出版年:2017
6.
Microscale evaluation of laser cladded
Inconel
625
exposed at high temperature in air
作者:
D. Verdi
;
davide.verdi@urjc.es
;
M.A. Garrido
;
C.J. Mú
;
nez
;
P. Poza
关键词:
Inconel
coatings
;
Laser cladding
;
Depth sensing indentation
;
Scanning electron microscopy
;
Transmission electron microscopy
刊名:Materials & Design
出版年:2017
7.
Residual stress mapping in
Inconel
625
fabricated through additive manufacturing: Method for neutron diffraction measurements to validate thermomechanical model predictions
作者:
Zhuqing Wang
a
;
Erik Denlinger
b
;
Panagiotis Michaleris
b
;
Alexandru D. Stoica
c
;
Dong Ma
c
;
Allison M. Beese
a
;
beese@matse.psu.edu
关键词:
Additive manufacturing
;
Inconel
625
;
Residual stress
;
Neutron diffraction
;
Thermomechanical modeling
刊名:Materials & Design
出版年:2017
8.
Effect of borotitanizing on microstructure and wear behavior of
Inconel
625
作者:
Ali Gü
;
nen
a
;
;
Erdoğan Kanca
b
;
ali.gunen@iste.edu.tr
;
aligunen2013@gmail.com
;
Hü
;
seyin Ç
;
akir
c
;
Mustafa Serdar Karakaş
d
;
Mustafa Sabri Gö
;
k
e
;
Yılmaz Kü
;
ç
;
ü
;
k
e
;
Mehmet Demir
a
关键词:
Ni-based superalloys
;
Surface modification
;
Mechanical properties
;
Wear
刊名:Surface and Coatings Technology
出版年:2017
9.
Crystallographic texture in an additively manufactured nickel-base superalloy
作者:
Dong Ma
a
;
dongma@ornl.gov
;
Alexandru D. Stoica
a
;
Zhuqing Wang
b
;
Allison M. Beese
b
;
amb961@psu.edu
关键词:
Texture
;
Inconel
625
;
Superalloy
;
Additive manufacturing
;
Neutron diffraction
刊名:Materials Science and Engineering: A
出版年:2017
10.
Materials selection of steam-phase change material (PCM) heat exchanger for thermal energy storage systems in direct steam generation facilities
作者:
F. Javier Ruiz-Cabañ
;
as
a
;
fjavier.ruiz@abengoa.com" class="auth_mail" title="E-mail the corresponding author
;
Aleix Jové
;
a
;
Cristina Prieto
a
;
Virginia Madina
b
;
A. Iné
;
s Ferná
;
ndez
c
;
Luisa F. Cabeza
d
关键词:
Corrosion
;
Solar energy
;
Direct steam generation (DSG)
;
Thermal energy storage (TES)
;
Phase change material (PCM)
;
Hydroxides
刊名:Solar Energy Materials and Solar Cells
出版年:2017
1
2
3
4
5
6
7
8
9
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