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金属研究所 [29]
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上海大学 [1]
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期刊论文 [33]
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Bottom-Up Electrodeposition of Large-Scale Nanotwinned Copper within 3D Through Silicon Via
期刊论文
MATERIALS, 2018, 卷号: 11, 期号: 2, 页码: -
作者:
Sun, FL
;
Liu, ZQ
;
Li, CF
;
Zhu, QS
;
Zhang, H
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  |  
浏览/下载:12/0
  |  
提交时间:2018/06/05
Columnar-grained Cu
Twins
Boundaries
Nanoscale
Strength
Behavior
Joints
Strain-controlled cyclic stability and properties of Cu with highly oriented nanoscale twins
期刊论文
Acta Materialia, 2014, 卷号: 81, 页码: 248-257
Q. S. Pan
;
L. Lu
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浏览/下载:19/0
  |  
提交时间:2015/01/14
Nanoscale twins
Strain-controlled fatigue
Cu
Cyclic stability
Fatigue property
copper single-crystals
nano-scale twins
severe plastic-deformation
ultrafine-grained metals
rate sensitivity
mechanical-properties
fatigue properties
strength
behavior
size
Plastic anisotropy and associated deformation mechanisms in nanotwinned metals
期刊论文
Acta Materialia, 2013, 卷号: 61, 期号: 1, 页码: 217-227
Z. S. You
;
X. Y. Li
;
L. J. Gui
;
Q. H. Lu
;
T. Zhu
;
H. J. Gao
;
L. Lu
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  |  
浏览/下载:27/0
  |  
提交时间:2013/12/24
Nanoscale twins
Cu
Orientation effect
Anisotropy
Deformation
mechanisms
molecular-dynamics simulation
coherent twin boundaries
centered-cubic
metals
nanoscale twins
flow-stress
grain-size
nanocrystalline
materials
tensile deformation
maximum strength
rate sensitivity
Fatigue behavior of columnar-grained Cu with preferentially oriented nano scale twins
期刊论文
Acta Materialia, 2013, 卷号: 61, 期号: 4, 页码: 1383-1393
Q. S. Pan
;
Q. H. Lu
;
L. Lu
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  |  
浏览/下载:16/0
  |  
提交时间:2013/12/24
Nanoscale twins
Fatigue behavior
"Zigzag" slip band
Dislocation
structure
Copper
stress-strain response
severe plastic-deformation
polycrystalline
copper
cyclic deformation
rate sensitivity
microstructural stability
nanostructured materials
nanocrystalline metals
dislocation-structures
mechanical-properties
Hydrogen-induced cracking behavior of twin boundary in gamma ' phase strengthened Fe-Ni based austenitic alloys
期刊论文
Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing, 2013, 卷号: 561, 页码: 7-12
S. H. Chen
;
M. J. Zhao
;
L. J. Rong
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  |  
浏览/下载:13/0
  |  
提交时间:2013/12/24
Hydrogen embrittlement
gamma ' phase
Grain boundaries
Twin
boundaries
Stacking fault energy (SFE)
strain-rate sensitivity
stainless-steels
nanoscale twins
fracture
metals
microstructure
embrittlement
dislocations
superalloys
mechanism
Architectured surface layer with a gradient nanotwinned structure in a Fe-Mn austenitic steel
期刊论文
Scripta Materialia, 2013, 卷号: 68, 期号: 1, 页码: 22-27
H. T. Wang
;
N. R. Tao
;
K. Lu
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  |  
浏览/下载:17/0
  |  
提交时间:2013/12/24
Architectured materials
Nanoscale twins
Surface mechanical grinding
treatment
Gradient structure
mechanical attrition treatment
compositionally graded materials
stainless-steel
copper
boundaries
strength
refinement
contact
scale
Novel Nanoscale Twinned Phases in Perovskite Oxides
期刊论文
ADVANCED FUNCTIONAL MATERIALS, 2013, 卷号: 23, 页码: 234-240
作者:
Prosandeev, Sergey[1]
;
Wang, Dawei[2]
;
Ren, Wei[3]
;
Iniguez, Jorge[4]
;
Bellaiche, Laurent[5]
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  |  
浏览/下载:3/0
  |  
提交时间:2019/04/30
nanoscale twins
phase transitions
oxygen tilting
perovskites
BiFeO3
Novel Nanoscale Twinned Phases in Perovskite Oxides
期刊论文
ADVANCED FUNCTIONAL MATERIALS, 2013, 卷号: 23, 期号: [db:dc_citation_issue], 页码: 234-240
作者:
Prosandeev, Sergey
;
Wang, Dawei
;
Ren, Wei
;
Iniguez, Jorge
;
Bellaiche, Laurent
收藏
  |  
浏览/下载:4/0
  |  
提交时间:2019/12/10
phase transitions
perovskites
nanoscale twins
BiFeO3
oxygen tilting
Bulk eutectic Cu-Ag alloys with abundant twin boundaries
期刊论文
Scripta Materialia, 2012, 卷号: 66, 期号: 2, 页码: 65-68
Y. Z. Tian
;
Z. F. Zhang
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  |  
浏览/下载:16/0
  |  
提交时间:2013/02/05
Eutectic Cu-Ag alloy
Twin boundary
Electron backscattering diffraction
(EBSD)
Strength
Ductility
strain-rate sensitivity
mechanical-properties
nanostructured
materials
plastic-deformation
tensile properties
maximum strength
nanoscale twins
al alloys
ductility
metals
择优取向纳米孪晶铜的塑性变形和断裂机理研究
学位论文
博士, 北京: 中国科学院金属研究所, 2012
尤泽升
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  |  
浏览/下载:143/0
  |  
提交时间:2013/04/12
纳米尺度孪晶
变形机理
加工硬化
各向异性
断裂机制
温度效应
Nanoscale twins
deformation mechanism
work hardening
anisotropy
fracture mechanism
temperature effect
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