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Development of a new ratcheting fatigue life prediction model of a nickel-based superalloy based on ratcheting strain rate
期刊论文
MATERIALS LETTERS, 2022, 卷号: 308, 页码: 4
Authors:
Kong, Weiwen
;
Nian, Taojie
;
Yuan, Chao
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View/Download:49/0
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Submit date:2021/12/09
Metals and alloys
Fatigue
Ratcheting strain rate
Fatigue life prediction model
Martensitic transformation within nanotwins enhances fatigue damage resistance of a nanotwinned austenitic stainless steel
期刊论文
SCRIPTA MATERIALIA, 2022, 卷号: 207, 页码: 6
Authors:
Li, Q.
;
Liu, D. Y.
;
Yan, F. K.
;
Tao, N. R.
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View/Download:26/0
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Submit date:2021/11/22
Nanotwins
Fatigue
Austenitic steel, Martensitic transformation
Localized dislocation interactions within slip bands and crack initiation in Mg-10Gd-3Y-0.3Zr alloy
期刊论文
INTERNATIONAL JOURNAL OF FATIGUE, 2021, 卷号: 150, 页码: 10
Authors:
He, Chao
;
Li, Xue
;
Liu, Yongjie
;
Wang, Chong
;
Zhang, Hong
;
Li, Lang
;
Wang, Qingyuan
;
Shao, Xiaohong
;
Chen, Qiang
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View/Download:25/0
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Submit date:2021/10/15
Fatigue crack initiation
Slip bands
Magnesium alloy
Dislocation intensity zone
(c plus a) dislocation
Low-cycle fatigue behavior of K416B Ni-based superalloy at 650 degrees C
期刊论文
JOURNAL OF CENTRAL SOUTH UNIVERSITY, 2021, 卷号: 28, 期号: 9, 页码: 2628-2635
Authors:
Xie Jun
;
Shu De-long
;
Hou Gui-chen
;
Yu Jin-jiang
;
Zhou Yi-zhou
;
Sun Xiao-feng
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View/Download:15/0
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Submit date:2021/12/09
K416B alloy
low cycle fatigue
deformation characteristics
fatigue cracks
Effect of Pt-Al bond coat on the high-cycle fatigue behaviour of a second-generation single crystal nickel-based superalloy at different temperatures
期刊论文
JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2021, 卷号: 14, 页码: 567-581
Authors:
Tao, X. P.
;
Wang, X. G.
;
Zhou, Y. Z.
;
Tan, K. J.
;
Meng, J.
;
Liang, J. J.
;
Yang, Y. H.
;
Liu, J. L.
;
Liu, J. D.
;
Li, J. G.
;
Sun, X. F.
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View/Download:31/0
  |  
Submit date:2021/11/22
High-cycle fatigue
Pt-Al bond coat
Ni-based superalloy
Fracture behaviour
Deformation mechanism
Environmental fatigue correction factor model for domestic nuclear-grade low-alloy steel
期刊论文
NUCLEAR ENGINEERING AND TECHNOLOGY, 2021, 卷号: 53, 期号: 8, 页码: 2600-2609
Authors:
Gao, Jun
;
Liu, Chang
;
Tan, Jibo
;
Zhang, Ziyu
;
Wu, Xinqiang
;
Han, En-Hou
;
Shen, Rui
;
Wang, Bingxi
;
Ke, Wei
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View/Download:24/0
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Submit date:2021/10/15
Low cycle fatigue
Low-alloy steel
Environmental assisted fatigue
Design codes
Effects of Grain Refinement on the Low-Cycle Fatigue Behavior of IN792 Superalloys
期刊论文
CRYSTALS, 2021, 卷号: 11, 期号: 8, 页码: 15
Authors:
Du, Beining
;
Sheng, Liyuan
;
Cui, Chuanyong
;
Hu, Ziyang
;
Sun, Xiaofeng
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View/Download:54/0
  |  
Submit date:2021/11/22
Ni-based superalloy
grain refinement
low-cycle fatigue
fracture
dislocation
Low cycle fatigue and high cycle fatigue of K4750 Ni-based superalloy at 600 degrees C: Analysis of fracture behavior and deformation mechanism
期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2021, 卷号: 820, 页码: 13
Authors:
Hou, Kunlei
;
Ou, Meiqiong
;
Wang, Min
;
Hao, Xianchao
;
Ma, Yingche
;
Liu, Kui
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View/Download:34/0
  |  
Submit date:2021/10/15
Ni-based superalloy
Low cycle fatigue
High cycle fatigue
Fracture analysis
Stage I
II cracking
Deformation structure
Corrosion fatigue model of austenitic stainless steels used in pressurized water reactor nuclear power plants
期刊论文
JOURNAL OF NUCLEAR MATERIALS, 2020, 卷号: 541, 页码: 10
Authors:
Tan, Jibo
;
Zhang, Ziyu
;
Zheng, Hui
;
Wang, Xiang
;
Gao, Jun
;
Wu, Xinqiang
;
Han, En-Hou
;
Yang, Shuangliang
;
Huang, Pengtao
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  |  
View/Download:33/0
  |  
Submit date:2021/02/02
Corrosion fatigue
Austenitic stainless steel
High temperature corrosion
Model
Corrosion fatigue model of austenitic stainless steels used in pressurized water reactor nuclear power plants
期刊论文
JOURNAL OF NUCLEAR MATERIALS, 2020, 卷号: 541, 页码: 10
Authors:
Tan, Jibo
;
Zhang, Ziyu
;
Zheng, Hui
;
Wang, Xiang
;
Gao, Jun
;
Wu, Xinqiang
;
Han, En-Hou
;
Yang, Shuangliang
;
Huang, Pengtao
Favorite
  |  
View/Download:24/0
  |  
Submit date:2021/02/02
Corrosion fatigue
Austenitic stainless steel
High temperature corrosion
Model