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CNKI学位论文(7)
知网期刊论文(20)
在“
Elsevier电子期刊
”中,
命中:
6,207
条,耗时:0.0939532 秒
在所有数据库中总计命中:
27
条
1.
Ageing resistance of rhodium supported on CeO
2
-
Zr
O
2
and ZrO
2
: Rhodium nanoparticle structure and Rh-support interaction under diverse ageing atmosphere
作者:
Yidan Cao
a
;
yidanlily@gmail.com
;
Rui Ran
a
;
ranr@tsinghua.edu.cn
;
Xueyuan Wu
b
;
Xiaodong Wu
b
;
Jie Wan
a
;
Duan Weng
a
;
b
;
duanweng@tsinghua.edu.cn
关键词:
Rhodium
;
Zr
O2
;
CeO2
;
Ageing atmosphere
;
Rh&
ndash
;
support interaction
刊名:Catalysis Today
出版年:2017
2.
Microstructural evolution and superplasticity in an Mg-Gd-Y-
Zr
alloy after processing by different SPD techniques
作者:
R. Alizadeh
a
;
R. Mahmudi
a
;
mahmudi@ut.ac.ir
;
P.H.R. Pereira
b
;
Y. Huang
b
;
T.G. Langdon
b
关键词:
ECAP
;
HPT
;
Mg&
ndash
;
Gd&
ndash
;
Y&
ndash
;
Zr
alloys
;
Nano-grained
;
Shear punch test
;
Superplasticity
刊名:Materials Science and Engineering: A
出版年:2017
3.
Phase composition, structure and properties of (
Zr
O
2
)
1−
x
−
y
(Sc
2
O
3
)
x
(Y
2
O
3
)
y
solid solution crystals (x=0.08-0.11; y=0.01-0.02) grown by directional crystallization of the melt
作者:
M.A. Borik
a
;
S.I. Bredikhin
b
;
V.T. Bublik
c
;
A.V. Kulebyakin
a
;
I.E. Kuritsyna
b
;
E.E. Lomonova
a
;
F.O. Milovich
c
;
philippmilovich@gmail.com
;
V.A. Myzina
a
;
V.V. Osiko
a
;
P.A. Ryabochkina
d
;
S.V. Seryakov
c
;
N.Yu. Tabachkova
c
关键词:
A1. Solid solutions
;
A2. Skull melting
;
growth from high temperature melt
;
B1.
Zr
O2&
ndash
;
Sc2O3&
ndash
;
Y2O3
;
B2. Ionic conducting materials
;
B3. Solid oxide fuel cells
刊名:Journal of Crystal Growth
出版年:2017
4.
Role of activation energies of individual phases in two-phase range on constitutive equation of
Zr
-2.5Nb-0.5Cu alloy
作者:
K.K. SAXENA
a
;
d
;
saxena0081@gmail.com
;
S.K. JHA
b
;
V. PANCHOLI
a
;
G.P. CHAUDHARI
a
;
D. SRIVASTAVA
c
;
G.K. DEY
c
;
N. SAIBABA
b
关键词:
Zr
&
ndash
;
2.5Nb&
ndash
;
0.5Cu alloy
;
hot deformation
;
activation energy
;
constitutive equation
;
two-phase material
刊名:Transactions of Nonferrous Metals Society of China
出版年:2017
5.
Zr
-in-rutile resetting in aluminosilicate bearing ultra-high temperature granulites: Refining the record of cooling and hydration in the Napier Complex, Antarctica
作者:
Ruairidh J. Mitchell
;
ruairidhjmitchell@gmail.com
;
Simon L. Harley
关键词:
UHT metamorphism
;
Granulites
;
Zr
-in-rutile geothermometry
;
Phase equilibrium modelling
;
Fluid&
ndash
;
rock interaction
;
Napier complex
刊名:Lithos
出版年:2017
6.
Equilibrium and metastable phases in a designed precipitation hardenable Mg-3Gd-3Nd-0.6
Zr
alloy
作者:
Qiaowang Chen
a
;
b
;
Aitao Tang
a
;
tat@cqu.edu.cn
;
Junhua Ye
a
;
Longlong Hao
a
;
Yurong Wang
a
;
Tiejun Zhang
b
关键词:
Magnesium alloys
;
Age hardening
;
Precipitation
;
EBSD
;
High&
ndash
;
angle annular dark&
ndash
;
field scanning transmission electron microscopy (HAADF&
ndash
;
STEM)
刊名:Materials Science and Engineering: A
出版年:2017
7.
Magnetic susceptibility, artifact volume in MRI, and tensile properties of swaged
Zr
-Ag composites for biomedical applications
作者:
Haruki Imai
a
;
Yoji Tanaka
a
;
Naoyuki Nomura
b
;
c
;
nnomura@material.tohoku.ac.jp
;
Hisashi Doi
b
;
Yusuke Tsutsumi
b
;
Takashi Ono
a
;
Takao Hanawa
b
关键词:
Magnetic resonance imaging (MRI)
;
Zr
&
ndash
;
Ag composites
;
Magnetic susceptibility
;
Artifact volume
;
Mechanical properties
刊名:Journal of the Mechanical Behavior of Biomedical Materials
出版年:2017
8.
Effect of different additives and open porosity on fracture toughness of
Zr
B
2
-SiC-based composites prepared by SPS
作者:
Zohre Balak
a
;
;
Mehdi Shahedi Asl
b
;
Mahdi Azizieh
a
;
Hosein Kafashan
a
;
Raziye Hayati
c
关键词:
Zr
B2&
ndash
;
SiC-based composites
;
Fracture toughness
;
Spark Plasma Sintering
;
Taguchi method
刊名:Ceramics International
出版年:2017
9.
Osteoblast cellular activity on low elastic modulus Ti-24Nb-4
Zr
-8Sn alloy
作者:
K.C. Nune
a
;
R.D.K. Misra
a
;
dmisra2@utep.edu
;
S.J. Li
b
;
Y.L. Hao
b
;
R. Yang
b
关键词:
Ti&
ndash
;
24Nb&
ndash
;
4
Zr
&
ndash
;
8Sn alloy
;
Low elastic modulus
;
Osteoblasts functions
刊名:Dental Materials
出版年:2017
10.
High cycle fatigue behavior of Ti-5Al-5Mo-5V-3Cr-1
Zr
titanium alloy with lamellar microstructure
作者:
Chaowen Huang
a
;
b
;
huangchaowen318@163.com
;
Yongqing Zhao
a
;
b
;
trc@c-nin.com
;
Shewei Xin
b
;
Changsheng Tan
c
;
Wei Zhou
b
;
Qian Li
b
;
Weidong Zeng
a
关键词:
Ti&
ndash
;
55531 titanium alloy
;
Microstructure
;
High&
ndash
;
cycle fatigue
;
Crack initiation
;
Crack propagation
刊名:Materials Science and Engineering: A
出版年:2017
1
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7
8
9
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题名(1108)
关键词(1040)
文摘(4205)
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