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在“
Elsevier电子期刊
”中,
命中:
179,688
条,耗时:0.1729447 秒
在所有数据库中总计命中:
201,425
条
1.
Improvement of wetability, sinterability,
mechanical
and electrical properties of Al
2
O
3
-Ni nanocomposites prepared by
mechanical
alloying
作者:
Mohammed A. Taha
a
;
Amira H. Nassar
a
;
Mahmoud F. Zawrah
b
;
mzawrah@hotmail.com
关键词:
Al2O3/Ni nanocomposites
;
Sintering
;
Mechanical
properties
;
Electrical resistivity
;
Mechanical
alloying
刊名:Ceramics International
出版年:2017
2.
Nanocellulose coated woven jute/green epoxy composites: Characterization of
mechanical
and dynamic
mechanical
behavior
作者:
Abdul Jabbar
a
;
abduljabbarntu@gmail.com
;
Jiří
;
Militký
;
a
;
Jakub Wiener
a
;
Bandu Madhukar Kale
a
;
Usman Ali
b
;
Samson Rwawiire
a
关键词:
Jute fibers
;
Nanocellulose coating
;
Mechanical
properties
;
Fracture toughness
;
Dynamic
mechanical
analysis
刊名:Composite Structures
出版年:2017
3.
Microstructure and
mechanical
properties variation of TiB/Ti matrix composite by thermo-
mechanical
processing in beta phase field
作者:
Fengcang Ma
a
;
mafengcang@163.com
;
Siyao Lu
a
;
Ping Liu
a
;
liuping@usst.edu.cn
;
Wei Li
a
;
Xinkuan Liu
a
;
Xiaohong Chen
a
;
Ke Zhang
a
;
Deng Pan
a
;
Weijie Lu
b
;
Di Zhang
b
关键词:
Titanium matrix composite
;
Microstructure evolution
;
Mechanical
property
;
Strengthening
;
Thermo-
mechanical
processing
刊名:Journal of Alloys and Compounds
出版年:2017
4.
Towards the
mechanical
characterization of abdominal wall by inverse analysis
作者:
R. Simó
;
n-Allué
;
a
;
rsimon@unizar.es
;
B. Calvo
a
;
b
;
A.A. Oberai
c
;
P.E. Barbone
d
关键词:
Abdominal wall
;
Mechanical
properties
;
In-vivo tests
;
Patient specific behavior
;
Inverse analysis
;
Nonlinear elasticity imaging
刊名:Journal of the
Mechanical
Behavior of Biomedical Materials
出版年:2017
5.
Mechanical
stimuli of trabecular bone in osteoporosis: A numerical simulation by finite element analysis of microarchitecture
作者:
Clara Sandino
a
;
b
;
David D. McErlain
a
;
b
;
John Schipilow
a
;
c
;
Steven K. Boyd
a
;
b
;
c
;
d
;
skboyd@ucalgary.ca
关键词:
Trabecular bone
;
Mechanical
stimuli
;
Micro computed tomography
;
Finite element
model
s
;
Osteoporosis
刊名:Journal of the
Mechanical
Behavior of Biomedical Materials
出版年:2017
6.
Experimental study of the
mechanical
behavior of an explanted mesh: The influence of healing
作者:
A. Morch
a
;
b
;
c
;
annie.morch@gmail.com
;
B. Pouseele
e
;
f
;
G. Doucè
;
de
e
;
f
;
J.-F. Witz
c
;
d
;
F. Lesaffre
b
;
c
;
P. Lecomte-Grosbras
b
;
c
;
M. Brieu
b
;
c
;
M. Cosson
c
;
e
;
f
;
C. Rubod
c
;
e
;
f
关键词:
Mechanical
characterization
;
Experimental protocol
;
Mesh
;
Soft tissue
;
Biological composite
;
Healing influence
刊名:Journal of the
Mechanical
Behavior of Biomedical Materials
出版年:2017
7.
Fabrication of novel magnesium-matrix composites and their
mechanical
properties prior to and during in vitro degradation
作者:
Sina Naddaf Dezfuli
a
;
;
Sander Leeflang
a
;
Zhiguang Huan
b
;
Jiang Chang
b
;
Jie Zhou
a
关键词:
Magnesium
;
Magnesium-matrix composites
;
Bredigite
;
Degradation
;
Mechanical
properties
刊名:Journal of the
Mechanical
Behavior of Biomedical Materials
出版年:2017
8.
Investigation of the
mechanical
properties and failure modes of hybrid natural fiber composites for potential bone fracture fixation plates
作者:
Saeed Manteghi
a
;
Zia Mahboob
a
;
Zouheir Fawaz
b
;
Habiba Bougherara
a
;
Habiba.bougherara@ryerson.ca
关键词:
Hybrid natural fiber composites
;
Mechanical
characterization
;
Water absorption
;
Glass/flax/epoxy composites
刊名:Journal of the
Mechanical
Behavior of Biomedical Materials
出版年:2017
9.
Physico-
mechanical
, morphological and biomedical properties of a novel natural wound dressing material
作者:
Javad Tavakoli
javad.tavakoli@flinders.edu.au
关键词:
Wound dressing
;
Borax
;
Mechanical
properties
;
Swelling
;
Biocompatibility
刊名:Journal of the
Mechanical
Behavior of Biomedical Materials
出版年:2017
10.
Simultaneously improving surface
mechanical
properties and in vitro biocompatibility of pure titanium via surface
mechanical
attrition treatment combined with low-temperature plasma nitriding
作者:
J. Sun
a
;
b
;
sunjian@hfut.edu.cn
;
Q.T. Yao
b
;
Y.H. Zhang
c
;
X.D. Du
a
;
Y.C. Wu
a
;
ycwu@hfut.edu.cn
;
W.P. Tong
b
关键词:
Titanium implant
;
Surface
mechanical
attrition treatment
;
Nanostructured
;
Low-temperature plasma nitriding
;
Mechanical
properties
;
In vitro biocompatibility
刊名:Surface and Coatings Technology
出版年:2017
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