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Chinese Academy of Sciences Institutional Repositories Grid
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CAS IR Grid
机构
金属研究所 [8]
武汉岩土力学研究所 [2]
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OAI收割 [10]
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期刊论文 [10]
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2023 [1]
2020 [1]
2014 [1]
2013 [1]
2009 [3]
2006 [1]
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Laboratory investigations on activation characteristics of fracture induced by fluid injection and unloading of normal stress
期刊论文
OAI收割
ACTA GEOTECHNICA, 2023, 页码: 19
作者:
Ding, Changdong
;
Zhang, Yihu
;
Zhu, Jiebing
;
Hu, Dawei
;
Zhou, Hui
  |  
收藏
  |  
浏览/下载:1/0
  |  
提交时间:2025/06/27
Fluid injection
Fracture activation
Hydraulic fracturing
Induced seismicity
Natural fracture
A method to experimentally investigate injection-induced activation of fractures
期刊论文
OAI收割
JOURNAL OF ROCK MECHANICS AND GEOTECHNICAL ENGINEERING, 2020, 卷号: 12, 期号: 6, 页码: 1326-1332
作者:
Ding, Changdong
;
Zhang, Yang
;
Teng, Qi
;
Hu, Dawei
;
Zhou, Hui
  |  
收藏
  |  
浏览/下载:36/0
  |  
提交时间:2021/05/25
Natural fracture
Fluid injection
Induced activation
Triaxial direct shear test
Hydraulic fracturing
Effect of Re on stacking fault nucleation under shear strain in Ni by atomistic simulation
期刊论文
OAI收割
Chinese Physics B, 2014, 卷号: 23, 期号: 11
Z. G. Liu
;
C. Y. Wang
;
T. Yu
收藏
  |  
浏览/下载:23/0
  |  
提交时间:2015/01/14
molecular dynamics
activation energy
stacking fault nucleation
minimum energy paths
elastic band method
saddle-points
crack-tip
fracture
Low cycle fatigue properties of CLAM steel at room temperature
期刊论文
OAI收割
Fusion Engineering and Design, 2013, 卷号: 88, 期号: 11, 页码: 3050-3059
X. Hu
;
L. X. Huang
;
W. G. Wang
;
Z. G. Yang
;
W. Sha
;
W. Wang
;
W. Yan
;
Y. Y. Shan
收藏
  |  
浏览/下载:25/0
  |  
提交时间:2014/02/19
Reduced activation ferritic-martensitic steel
CLAM steel
Low cycle
fatigue
Fracture
activation ferritic/martensitic steels
martensitic steels
behavior
jlf-1
f82h
Effects of dynamic strain aging on mechanical properties of SA508 class 3 reactor pressure vessel steel
期刊论文
OAI收割
Journal of Materials Science, 2009, 卷号: 44, 期号: 11, 页码: 2882-2889
S. Xu
;
X. Q. Wu
;
E. H. Han
;
W. Ke
收藏
  |  
浏览/下载:17/0
  |  
提交时间:2012/04/13
high-temperature water
316l stainless-steel
deformation-behavior
tensile properties
activation-energy
jerky flow
alloy
fatigue
fracture
model
Influence of thermo hydrogen treatment on hot deformation behavior of Ti600 alloy
期刊论文
OAI收割
TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2009, 卷号: 19, 期号: 1, 页码: 65-71
作者:
Zhao Jingwei
;
Ding Hua
;
Wang Yaoqi
;
Hou Hongliang
  |  
收藏
  |  
浏览/下载:23/0
  |  
提交时间:2021/02/02
TI-6AL-4V ALLOY
ALPHA-TITANIUM
MICROSTRUCTURE
COMPRESSION
FRACTURE
IMI834
Ti600 alloy
thermo hydrogen treatment
hot deformation
flow stress
activation energy
Influence of thermo hydrogen treatment on hot deformation behavior of Ti600 alloy
期刊论文
OAI收割
TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2009, 卷号: 19, 期号: 1, 页码: 65-71
作者:
Zhao Jingwei
;
Ding Hua
;
Wang Yaoqi
;
Hou Hongliang
  |  
收藏
  |  
浏览/下载:25/0
  |  
提交时间:2021/02/02
TI-6AL-4V ALLOY
ALPHA-TITANIUM
MICROSTRUCTURE
COMPRESSION
FRACTURE
IMI834
Ti600 alloy
thermo hydrogen treatment
hot deformation
flow stress
activation energy
Atomistic simulation for configuration evolution and energetic calculation of crack in body-centered-cubic iron
期刊论文
OAI收割
Journal of Materials Research, 2006, 卷号: 21, 期号: 10, 页码: 2542-2549
L. X. Cao
;
C. Y. Wang
收藏
  |  
浏览/下载:24/0
  |  
提交时间:2012/04/13
molecular-dynamics simulation
to-ductile transition
dislocation
emission
alpha-iron
activation-energy
single-crystals
fracture
tip
deformation
cleavage
Creep rupture Behavior of K40S alloy at elevated temperatures
期刊论文
OAI收割
Journal of Materials Science & Technology, 2004, 卷号: 20, 期号: 2, 页码: 175-179
F. M. Yang
;
X. F. Sun
;
H. R. Guan
;
Z. Q. Hu
收藏
  |  
浏览/下载:32/0
  |  
提交时间:2012/04/14
K40S alloy
creep
fracture
crack propagation
activation-energies
superalloy
term
Brittle-to-ductile transition in multiphase NiAl alloy
期刊论文
OAI收割
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2002, 卷号: 325, 期号: 1-2, 页码: 186-193
作者:
Cui, CY
;
Chen, YX
;
Guo, JT
;
Qi, YH
;
Ye, HQ
  |  
收藏
  |  
浏览/下载:17/0
  |  
提交时间:2021/02/02
microstructure
BDTT
fracture morphology
the apparent activation energy (Q)