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内部出版物
Wiley电子期刊(26)
SpringerLink电子期刊(42)
Elsevier电子期刊(1250)
ACS电子期刊(3)
在“
Elsevier电子期刊
”中,
命中:
1,250
条,耗时:0.0649698 秒
在所有数据库中总计命中:
1,321
条
1.
Stitch welding of Ti-6Al-
4V
titanium alloy by fiber laser
作者:
Cui LI
a
;
Bin LI
b
;
licui0211@163.com
;
lismile615@163.com
;
Ze-feng WU
a
;
Xiao-yong QI
a
;
Bing YE
a
;
Ai-hua WANG
a
;
b
关键词:
Ti&
ndash
;
6Al&
ndash
;
4V
titanium alloy
;
fiber laser
;
stitch welding
;
welding parameter
;
porosity
刊名:Transactions of Nonferrous Metals Society of China
出版年:2017
2.
Nanomechanical properties, wear resistance and in-vitro characterization of Ta
2
O
5
nanotubes coating on biomedical grade Ti-6Al-
4V
作者:
Masoud Sarraf
a
;
b
;
Bushroa Abdul Razak
a
;
b
;
c
;
d
;
bushroa@um.edu.my
;
Bahman Nasiri-Tabrizi
e
;
bahman_nasiri@hotmail.com
;
Ali Dabbagh
a
;
f
;
Noor Hayaty Abu Kasim
f
;
Wan Jefrey Basirun
g
;
Eshamsul Bin Sulaiman
f
关键词:
Ta2O5 nanotubes
;
Mechanical properties
;
In-vitro bioactivity
;
Corrosion resistance
;
Ti&
ndash
;
6Al&
ndash
;
4V
刊名:Journal of the Mechanical Behavior of Biomedical Materials
出版年:2017
3.
Investigation of carbon nanotube added dielectric on the surface characteristics and machining performance of Ti-6Al-
4V
alloy in EDM process
作者:
Mohammadreza Shabgard
;
mrshabgard@tabrizu.ac.ir
;
mrshabgard@yahoo.com
;
Behnam Khosrozadeh
关键词:
Carbon nanotube
;
EDM
;
Ti&
ndash
;
6Al&
ndash
;
4V
;
PMEDM
刊名:Journal of Manufacturing Processes
出版年:2017
4.
Microstructural characterisation of metallic shot peened and laser shock peened Ti-6Al-
4V
作者:
Steven J. Lainé
;
a
;
sl655@cam.ac.uk" class="auth_mail" title="E-mail the corresponding author
;
Kevin M. Knowles
a
;
Phillip J. Doorbar
b
;
Richard D. Cutts
b
;
David Rugg
b
关键词:
Residual stress
;
Metallic shot peening (MSP)
;
Laser shock peening (LSP)
;
Ti&
ndash
;
6Al&
ndash
;
4V
;
Transmission Kikuchi Diffraction (TKD)
刊名:Acta Materialia
出版年:2017
5.
Defect distribution and microstructure heterogeneity effects on fracture resistance and fatigue behavior of EBM Ti-6Al-
4V
作者:
Mohsen Seifi
a
;
mohsen.seifi@case.edu" class="auth_mail" title="E-mail the corresponding author
;
Ayman Salem
b
;
Daniel Satko
b
;
Joshua Shaffer
b
;
John J. Lewandowski
a
;
JJL3@case.edu" class="auth_mail" title="E-mail the corresponding author
关键词:
Additive manufacturing
;
Ti&
ndash
;
6Al&
ndash
;
4V
;
Electron Beam Melting
;
Microstructure
;
Defect
;
Fracture toughness
;
Fatigue crack growth
刊名:International Journal of Fatigue
出版年:2017
6.
Microstructure, surface topography and sliding wear behaviour of titanium based coating on AISI 1040 steel by magnetron sputtering
作者:
Selvakumar N
a
;
1
;
nsk2966@gmail.com
;
Malkiya Rasalin Prince R
b
;
russelmecher@gmail.com
关键词:
Magnetron sputtering
;
Ball on disc
;
Flash temperature
;
AISI 1040 steel
;
Ti&
ndash
;
6Al&
ndash
;
4V
&
ndash
;
2B4C
刊名:Archives of Civil and Mechanical Engineering
出版年:2017
7.
Anisotropic high cycle fatigue behavior of Ti-6Al-
4V
obtained by powder bed laser fusion
作者:
Gianni Nicoletto
gianni.nicoletto@unipr.it" class="auth_mail" title="E-mail the corresponding author
关键词:
Fatigue
;
Ti&
ndash
;
6Al&
ndash
;
4V
;
Powder bed fusion
;
Miniature specimen
;
Microstructure
刊名:International Journal of Fatigue
出版年:2017
8.
Creep behavior evaluation and characterization of SiC film with Cr interlayer deposited by HiPIMS in Ti-6Al-
4V
alloy
作者:
Tarcila Sugahara
a
;
tarcilasugahara@yahoo.com.br
;
Gislene Valdete Martins
b
;
Fabiano Emmanuel Montoro
c
;
Abrã
;
o Merij Neto
a
;
Marcos Massi
a
;
d
;
Argemiro Soares da Silva Sobrinho
b
;
Danieli Aparecida Pereira Reis
a
;
b
关键词:
SiC
;
Ti-6Al-
4V
;
HiPIMS
;
Microstructural characterization
;
Creep
刊名:Surface and Coatings Technology
出版年:2017
9.
In situ tailoring microstructure in additively manufactured Ti-6Al-
4V
for superior mechanical performance
作者:
W. Xu
a
;
b
;
wei.xu@mq.edu.au
;
E.W. Lui
b
;
A. Pateras
b
;
M. Qian
b
;
M. Brandt
b
;
milan.brandt@rmit.edu.au
关键词:
Ti-6Al-
4V
;
Selective laser melting
;
Additive manufacturing
;
Microstructural control
;
Martensite decomposition
刊名:Acta Materialia
出版年:2017
10.
Influence of microstructure [alpha + beta and beta] on very high cycle fatigue behaviour of Ti-6Al-
4V
alloy
作者:
Vincenzo Crupi
a
;
crupi.vincenzo@unime.it
;
Gabriella Epasto
a
;
gabriella.epasto@unime.it
;
Eugenio Guglielmino
a
;
eguglie@unime.it
;
Antonino Squillace
b
;
antonino.squillace@unina.it
关键词:
Ti&
ndash
;
6Al&
ndash
;
4V
alloy
;
Very high cycle fatigue
;
Thermography
;
Microstructure
;
Microscopy
刊名:International Journal of Fatigue
出版年:2017
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