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CNKI会议论文(14)
CNKI学位论文(4745)
CNKI期刊论文0611(12)
知网期刊论文(6393)
在“
Elsevier电子期刊
”中,
命中:
2,304
条,耗时:0.05997 秒
在所有数据库中总计命中:
11,164
条
1.
Wear
behaviour of
friction
stir weld joint of cast Al (4-10%) Cu alloy welded at different operating parameters
作者:
Alok Manas Dubey
a
;
alokmanas28@rediffmail.com" class="auth_mail" title="E-mail the corresponding author
;
alokmanas38@gmail.com" class="auth_mail" title="E-mail the corresponding author
;
Ajay Kumar
b
;
Ashok Kumar Yadav
a
关键词:
Friction
stir welding (FSW)
;
Cast aluminium alloy
;
Wear
behavior
;
Dry sliding
刊名:Journal of Materials Processing Technology
出版年:2017
2.
Effect of load on the
friction
and
wear
characteristics of Si
3
N
4
-hBN ceramic composites sliding against steels
作者:
Wei Chen
;
chenweijd@sust.edu.cn
;
Da Zhang
;
Xu Ai
关键词:
Composite ceramics
;
Dry
friction
;
Load
;
Wear
mechanisms
;
Surface film
刊名:Ceramics International
出版年:2017
3.
Tribological
behavior
and
lubrication mechanism of self-lubricating ceramic/metal composites: The effect of matrix type on the
friction
and
wear
properties
作者:
Yunfeng Su
a
;
b
;
Yongsheng Zhang
a
;
zhysh@licp.cas.cn
;
Junjie Song
a
;
b
;
Litian Hu
a
关键词:
Ceramic-matrix composite
;
Metal-matrix composite
;
Graphite
;
Sliding
wear
;
Hardness
刊名:
Wear
出版年:2017
4.
Friction
and
wear
behavior
of Al-SiC(n) hybrid composites with carbon addition
作者:
Bartosz Hekner
a
;
bartosz.hekner@polsl.pl" class="auth_mail" title="E-mail the corresponding author
;
Jerzy Myalski
a
;
Nathalie Valle
b
;
Agnieszka Botor-Probierz
b
;
Małgorzata Sopicka-Lizer
a
;
Jakub Wieczorek
a
关键词:
Metal-matrix composites
;
Hybrid
;
Particle-reinforcement
;
Tribological properties
;
Wear
;
Powder processing
刊名:Composites Part B: Engineering
出版年:2017
5.
The research on the sliding
friction
and
wear
behavior
s of TiAl-10 wt%Ag at elevated temperatures
作者:
Kang Yang
a
;
b
;
Xiaoliang Shi
a
;
sxl071932@126.com
;
Yuchun Huang
a
;
Zhihai Wang
a
;
Yufu Wang
a
;
Ao Zhang
a
;
Qiaoxin Zhang
a
关键词:
Composite materials
;
Sintering
;
Electron microscopy
;
Mechanical testing
;
Tribology
and
wear
刊名:Materials Chemistry
and
Physics
出版年:2017
6.
The coefficient of
friction
of UHMWPE along an entire walking cycle using a ball-on-disc tribometer under arthrokinematics
and
loading conditions prescribed by ISO 14243-3:2014
作者:
J.D.O. Barceinas-Sanchez
;
obarceinas@ipn.mx
;
M. Alvarez-Vera
;
L.A. Montoya-Santiyanes
;
I. Dominguez-Lopez
;
A.L. Garcia-Garcia
关键词:
UHMWPE
;
ISO st
and
ard
;
Coefficient of
friction
;
Sliding/rolling
;
Walking cycle
;
Ball-on-disc
刊名:Journal of the Mechanical
Behavior
of Biomedical Materials
出版年:2017
7.
Mechanical
and
tribological
behavior
s of the tribo-layer with nanocrystalline structure during sliding contact: Experiments
and
model assessment
作者:
Wenzheng Zhai
a
;
b
;
Xiaoliang Shi
b
;
sxl071932@126.com" class="auth_mail" title="E-mail the corresponding author
;
Kang Yang
b
;
Yuchun Huang
b
;
Liping Zhou
a
;
Wenlong Lu
a
;
hustwenlong@mail.hust.edu.cn" class="auth_mail" title="E-mail the corresponding author
关键词:
Mechanical properties
;
Wear
;
Analytical modelling
;
Surface analysis
刊名:Composites Part B: Engineering
出版年:2017
8.
Structure
and
high temperature tribological
behavior
of TiAlN/nitride duplex treated coatings on Ti6Al4V
作者:
Ruili Niu
a
;
b
;
Jinlong Li
a
;
lijl@nimte.ac.cn
;
Yongxin Wang
a
;
Jianmin Chen
a
;
Qunji Xue
a
关键词:
Duplex treatment
;
Ti alloy
;
Tribology
;
High temperature
;
Wear
mechanism
刊名:Surface
and
Coatings Technology
出版年:2017
9.
Low
friction
and
high strength of 316L stainless steel tubing for biomedical applications
作者:
Auezhan Amanov
a
;
aamanov@outlook.com
;
Soo&ndash
;
Wohn Lee
b
;
Young&ndash
;
Sik Pyun
a
关键词:
316L SS
;
Nanocrystallization
;
Sliding
friction
;
Sliding
wear
;
Hardness
;
UNSM
刊名:Materials Science
and
Engineering: C
出版年:2017
10.
Pin-on-disc study of brake
friction
materials with ball-milled nanostructured components
作者:
Cinzia Menapace
a
;
cinzia.menapace@unitn.it
;
Mara Leonardi
a
;
Guido Perricone
b
;
Mauro Bortolotti
a
;
Giovanni Straffelini
a
;
Stefano Gialanella
a
关键词:
Disc brake
;
Friction
material
;
Friction
layer
;
High energy ball-milling
;
Copper reduction
刊名:Materials & Design
出版年:2017
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