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CNKI期刊论文0611(60)
在“
Elsevier电子期刊
”中,
命中:
6,343
条,耗时:0.1049569 秒
在所有数据库中总计命中:
32,966
条
1.
Porous polyether ether ketone: A candidate for hard tissue implant
material
s
作者:
Qiuyan Li
a
;
Yunxia Zhang
a
;
Dong Wang
a
;
Huang Wang
a
;
Guo He
a
;
b
;
ghe@sjtu.edu.cn
关键词:
PEEK
;
Porous
material
;
Biomedical
material
;
Mechanical property
;
Implant
刊名:
Material
s & Design
出版年:2017
2.
Determination of replicate composite bone
material
properties using modal analysis
作者:
Steven Leuridan
a
;
steven.leuridan@kuleuven.be
;
Quentin Goossens
a
;
b
;
quentin.goossens@kuleuven.be
;
Leonard Pastrav
b
;
leonard.pastrav@kuleuven.be
;
Jorg Roosen
c
;
jorg.roosen@gmail.com
;
Michiel Mulier
c
;
michiel.mulier@uzleuven.be
;
Kathleen Denis
b
;
kathleen.denis@kuleuven.be
;
Wim Desmet
d
;
wim.desmet@kuleuven.be
;
Jos Vander Sloten
a
;
jos.vandersloten@kuleuven.be
关键词:
Fourth-generation replicate composite bones
;
Material
parameters updating
;
Modal analysis
刊名:Journal of the Mechanical Behavior of
Biomedical
Material
s
出版年:2017
3.
Composition optimization of low modulus and high-strength TiNb-based alloys for
biomedical
applications
作者:
I.V. Okulov
a
;
b
;
c
;
okulovilya@yandex.ru
;
A.S. Volegov
a
;
d
;
H. Attar
e
;
M. Bö
;
nisch
a
;
S. Ehtemam-Haghighi
e
;
M. Calin
a
;
J. Eckert
f
;
g
关键词:
Titanium alloy
;
Biomedical
alloy
;
Implant
material
;
Low Young's modulus
;
Deformation mechanism
刊名:Journal of the Mechanical Behavior of
Biomedical
Material
s
出版年:2017
4.
Material
properties of the heel fat pad across strain rates
作者:
Grigoris Grigoriadis
;
Nicolas Newell
;
Diagarajen Carpanen
;
Alexandros Christou
;
Anthony M.J. Bull
;
Spyros D. Masouros
;
s.masouros04@imperial.ac.uk
关键词:
Heel fat pad
;
Strain rate
;
Material
properties
;
Hyperelasticity
;
Viscoelasticity
;
Foot and ankle
刊名:Journal of the Mechanical Behavior of
Biomedical
Material
s
出版年:2017
5.
Reactivity of BaTiO
3
-Ca
10
(PO
4
)
6
(OH)
2
phases in composite
material
s for
biomedical
applications
作者:
F.J. Vouilloz
a
;
M.S. Castro
a
;
G.E. Vargas
b
;
A. Gorustovich
b
;
M.A. Fanovich
a
;
mafanovi@fi.mdp.edu.ar
关键词:
Barium titanate
;
Hydroxyapatite
;
Biomedical
composite
;
Solid state reaction
刊名:Ceramics International
出版年:2017
6.
Wear performance of novel nanostructured Ti-Cu intermetallic alloy as a potential
material
for
biomedical
applications
作者:
M.R. Akbarpour
a
;
akbarpour@maragheh.ac.ir
;
mreza.akbarpour@gmail.com
;
S. Moniri Javadhesari
b
关键词:
Biomedical
application
;
Intermetallic alloy
;
Wear
;
Mechanical alloying
;
Friction
刊名:Journal of Alloys and Compounds
出版年:2017
7.
Material
properties of bovine intervertebral discs across strain rates
作者:
Nicolas Newell
;
n.newell09@imperial.ac.uk
;
Grigorios Grigoriadis
;
Alexandros Christou
;
Diagarajen Carpanen
;
Spyros D. Masouros
关键词:
Intervertebral disc
;
spine
;
Finite element modelling
;
inverse methods
;
Collagen fibre
;
material
properties
刊名:Journal of the Mechanical Behavior of
Biomedical
Material
s
出版年:2017
8.
Surface deposition of graphene layer for bioactivity improvement of
biomedical
316 stainless steel
作者:
Huaijuan Zhou
a
;
Meng Jiang
b
;
Yunchuan Xin
a
;
Guangyao Sun
a
;
Shiwei Long
a
;
Shanhu Bao
a
;
Xun Cao
a
;
caoxun2015@gmail.com
;
Shidong Ji
a
;
sdki@mail.sic.ac.cn
;
Ping Jin
a
;
p-jin@mail.sic.ac.cn
关键词:
Graphene
;
Carbon
material
s
;
Biomedical
stainless steel
;
Chemical vapor deposition
;
Interfaces
刊名:
Material
s Letters
出版年:2017
9.
Controlling cell adhesion using layer-by-layer approaches for
biomedical
applications
作者:
Shanshan Guo
a
;
Xiaoying Zhu
b
;
zhux@imre.a-star.edu.sg" class="auth_mail" title="E-mail the corresponding author
;
Xian Jun Loh
b
;
c
;
d
;
lohxj@imre.a-star.edu.sg" class="auth_mail" title="E-mail the corresponding author
关键词:
LbL assembly
;
Surface modification
;
Cell adhesion
;
Mammalian and bacterial cells
;
Biomedical
application
刊名:
Material
s Science & Engineering C
出版年:2017
10.
Microstructure and mechanical properties of a newly developed low Young's modulus Ti-15Zr-5Cr-2Al
biomedical
alloy
作者:
Pan Wang
a
;
b
;
wangp@SIMTech.a-star.edu.sg
;
wangpangh@gmail.com
;
Lihong Wu
a
;
Yan Feng
c
;
Jiaming Bai
b
;
Baicheng Zhang
b
;
Jie Song
b
;
so0001ie@e.ntu.edu.sg
;
so0001ie@gmail.com
;
Shaokang Guan
a
关键词:
Titanium alloy
;
Microstructure
;
Mechanical properties
;
Young's modulus
;
Biomedical
applications
刊名:
Material
s Science and Engineering: C
出版年:2017
1
2
3
4
5
6
7
8
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按检索点细分(6343)
刊名(1694)
题名(94)
作者(1)
关键词(68)
文摘(2297)
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