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CAS IR Grid
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金属研究所 [46]
地质与地球物理研究所 [2]
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合肥物质科学研究院 [1]
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OAI收割 [50]
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期刊论文 [50]
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2023 [9]
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Tailoring high-temperature mechanical properties of laser powder bed fusion Ti-6.5Al-2Zr-1Mo-1 V alloy via microstructure design
期刊论文
OAI收割
MATERIALS & DESIGN, 2023, 卷号: 236, 页码: 18
作者:
Zhang, Yu
;
Zhai, Zirong
;
Wu, Zhaoxuan
;
Lin, Wenhu
;
Yang, Rui
  |  
收藏
  |  
浏览/下载:1/0
  |  
提交时间:2025/04/27
Ti-6.5Al-2Zr-1Mo-1V alloy
Laser powder bed fusion
In situ tensile test
Microstructure characterization
Mechanical property
Dislocation
Tailoring high-temperature mechanical properties of laser powder bed fusion Ti-6.5Al-2Zr-1Mo-1 V alloy via microstructure design
期刊论文
OAI收割
MATERIALS & DESIGN, 2023, 卷号: 236, 页码: 18
作者:
Zhang, Yu
;
Zhai, Zirong
;
Wu, Zhaoxuan
;
Lin, Wenhu
;
Yang, Rui
  |  
收藏
  |  
浏览/下载:1/0
  |  
提交时间:2025/04/27
Ti-6.5Al-2Zr-1Mo-1V alloy
Laser powder bed fusion
In situ tensile test
Microstructure characterization
Mechanical property
Dislocation
Tailoring high-temperature mechanical properties of laser powder bed fusion Ti-6.5Al-2Zr-1Mo-1 V alloy via microstructure design
期刊论文
OAI收割
MATERIALS & DESIGN, 2023, 卷号: 236, 页码: 18
作者:
Zhang, Yu
;
Zhai, Zirong
;
Wu, Zhaoxuan
;
Lin, Wenhu
;
Yang, Rui
  |  
收藏
  |  
浏览/下载:1/0
  |  
提交时间:2025/04/27
Ti-6.5Al-2Zr-1Mo-1V alloy
Laser powder bed fusion
In situ tensile test
Microstructure characterization
Mechanical property
Dislocation
Tailoring high-temperature mechanical properties of laser powder bed fusion Ti-6.5Al-2Zr-1Mo-1 V alloy via microstructure design
期刊论文
OAI收割
MATERIALS & DESIGN, 2023, 卷号: 236, 页码: 18
作者:
Zhang, Yu
;
Zhai, Zirong
;
Wu, Zhaoxuan
;
Lin, Wenhu
;
Yang, Rui
  |  
收藏
  |  
浏览/下载:1/0
  |  
提交时间:2025/04/27
Ti-6.5Al-2Zr-1Mo-1V alloy
Laser powder bed fusion
In situ tensile test
Microstructure characterization
Mechanical property
Dislocation
Investigation on the fatigue behavior of 7075 aluminum alloy at different aging states
期刊论文
OAI收割
INTERNATIONAL JOURNAL OF FATIGUE, 2023, 卷号: 175, 页码: 12
作者:
Gong, B. S.
;
Zhang, Z. J.
;
Hou, J. P.
;
Li, R. H.
;
Liu, R.
  |  
收藏
  |  
浏览/下载:34/0
  |  
提交时间:2024/01/08
7075 Al alloy
Aging state
Fatigue behavior
Tensile properties
Dislocation slip mode
In situ EBSD/HR-DIC-based investigation on anisotropy mechanism of a near alpha titanium plate with strong transverse texture
期刊论文
OAI收割
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2023, 卷号: 867, 页码: 15
作者:
Jia, Runchen
;
Zeng, Weidong
;
Zhao, Zibo
  |  
收藏
  |  
浏览/下载:39/0
  |  
提交时间:2024/01/07
Anisotropy mechanism
In -situ tensile
Digital image correction
Transverse texture
Dislocation structures
γ' 相对高钨镍基高温合金拉伸和持久变形行为的影响
期刊论文
OAI收割
材料研究学报, 2023, 卷号: 37, 期号: 1, 页码: 29-38
作者:
韦林
;
周思耕
;
盛乃成
;
于金江
;
侯桂臣
  |  
收藏
  |  
浏览/下载:74/0
  |  
提交时间:2024/01/08
metallic materials
K416B alloy
γ' precipitation
tensile behavior
duration
dislocation
金属材料
K416B合金
γ'析出相
拉伸
持久
位错
Ductilizing Ti19Zr19Hf19Nb19TM5Be19 (TM = Fe, Co, Ni and Cu) high-entropy bulk metallic glass composites via in-situ precipitated refractory high-entropy alloy dendrites
期刊论文
OAI收割
INTERMETALLICS, 2023, 卷号: 152, 页码: 10
作者:
Liu, M. L.
;
Li, W.
;
Zeng, S.
;
Li, Y. F.
;
Fu, H. M.
  |  
收藏
  |  
浏览/下载:59/0
  |  
提交时间:2023/05/09
High -entropy bulk metallic glasses
High -entropy alloys
Cross slip
Dislocation multiplication
Tensile ductility
Ductilizing Ti19Zr19Hf19Nb19TM5Be19 (TM = Fe, Co, Ni and Cu) high-entropy bulk metallic glass composites via in-situ precipitated refractory high-entropy alloy dendrites
期刊论文
OAI收割
INTERMETALLICS, 2023, 卷号: 152, 页码: 10
作者:
Liu, M. L.
;
Li, W.
;
Zeng, S.
;
Li, Y. F.
;
Fu, H. M.
  |  
收藏
  |  
浏览/下载:75/0
  |  
提交时间:2023/05/09
High -entropy bulk metallic glasses
High -entropy alloys
Cross slip
Dislocation multiplication
Tensile ductility
Effect of Pre-Tension on the Fatigue Fracture of Under-Aged 7N01 Aluminum Alloy Plate
期刊论文
OAI收割
ACTA METALLURGICA SINICA, 2022, 卷号: 58, 期号: 6, 页码: 760-770
作者:
Tian Ni
;
Shi Xu
;
Liu Wei
;
Liu Chuncheng
;
Zhao Gang
  |  
收藏
  |  
浏览/下载:53/0
  |  
提交时间:2022/07/14
7N01 aluminum alloy plate
pre-tensile deformation
under-aged
dislocation
fatigue