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中国科学院力学研究所机构知识库
Knowledge Management System of Institue of Mechanics, CAS
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Effect of dilute atom Gd on critical resolved shear stress and anisotropic deformation mechanism of Mg-Gd alloy
期刊论文
MATERIALS TODAY COMMUNICATIONS, 2024, 卷号: 38, 页码: 5
Authors:
Li N(李娜)
;
Li YQ(李玉琼)
;
Wang, Chuanyun
;
Shi, Dongfeng
;
Yang, Lingwei
Favorite
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View/Download:58/0
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Submit date:2024/01/22
Mg alloys
Solid solution
Critical resolved shear stress
Micropillar compression
Tailoring nanoprecipitates to achieve ultrahigh strength (CoCrNi)94.5W3Ta2.5 medium-entropy alloys
期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2024, 卷号: 892, 页码: 13
Authors:
Chen, Jin-Xi
;
Li, Tong
;
Tan, Yuan-Yuan
;
Chen, Yan
;
Wang, Hai-Ying
;
Dai, Lan-Hong
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View/Download:39/0
  |  
Submit date:2024/03/25
Dual nanoprecipitates
Medium-entropy alloys
Mechanical properties
Precipitation hardening
Atomistic insights into the influence of hydrogen on crack propagation in tungsten
期刊论文
FUSION ENGINEERING AND DESIGN, 2023, 卷号: 197, 页码: 11
Authors:
Shi, Jun
;
Li, Bingchen
;
Li, Lei
;
Liu, Yifan
;
Fan, Xinyue
;
Peng Q(彭庆)
;
Liang, Linyun
;
Jin, Shuo
;
Lu, Guanghong
Adobe PDF(27292Kb)
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View/Download:115/3
  |  
Submit date:2023/12/11
Molecular dynamics simulation
Hydrogen
Crack propagation
Plasma-facing materials
Tungsten
A method of quasi in-situ EBSD observation for microstructure and damage evolution in fatigue and dwell fatigue of Ti alloys
期刊论文
INTERNATIONAL JOURNAL OF FATIGUE, 2023, 卷号: 176, 页码: 20
Authors:
Sun CQ(孙成奇)
;
Sun, Jian
;
Chi WQ(池维乾)
;
Wang JX(王家璇)
;
Wang, Wenjing
Adobe PDF(61134Kb)
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View/Download:142/8
  |  
Submit date:2023/10/16
Ti-6Al-4V ELI titanium alloy
Low cycle fatigue
Dwell fatigue
Deformation twinning
Failure mechanism
Nanograin formation mechanism under fatigue loadings in additively manufactured Ti-6Al-4V alloy
期刊论文
INTERNATIONAL JOURNAL OF FATIGUE, 2023, 卷号: 175, 页码: 107821
Authors:
Chi WQ(池维乾)
;
Wang, Wenjing
;
Wu, Lei
;
Duan GH(段桂花)
;
Sun CQ(孙成奇)
Adobe PDF(30782Kb)
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View/Download:46/3
  |  
Submit date:2023/09/05
Additively manufactured titanium alloy
Very high cycle fatigue
Crack initiation
Twinning
Nanograin formation
Secondary orientation effects on the low cycle fatigue behaviors of rectangular-sectional Ni-based single crystal superalloys at medium and high temperatures
期刊论文
FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2023
Authors:
Rui SS(芮少石)
;
He, Zhiwu
;
Guo YY(郭艺云)
;
Su, Yue
;
Han, Qinan
;
Ma, Xianfeng
;
Shi, Huiji
Adobe PDF(2553Kb)
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View/Download:69/3
  |  
Submit date:2023/07/17
fatigue life
low cycle fatigue
NBSXs
secondary orientation effects
stress asymmetry
含纳米尺度结构金属的力学行为和强韧化机理
学位论文
博士论文,北京: 中国科学院大学, 2023
Authors:
程文强
Adobe PDF(8525Kb)
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View/Download:220/16
  |  
Submit date:2023/06/25
分子动力学模拟
极小尺寸纳米晶
机械稳定性
热稳定性
非均匀变形
Laser shock peening strengthens additively manufactured high-entropy alloy through novel surface grain rotation
期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2023, 卷号: 871, 页码: 144886
Authors:
Bai YJ(白云建)
;
Lyu, GuoJian
;
Wang YJ(王云江)
;
Chen TY(陈天宇)
;
Zhang K(张坤)
;
Wei BC(魏炳忱)
Adobe PDF(10831Kb)
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Submit date:2023/06/15
High -entropy alloy
Additive manufacturing
Laser shock peening
Grain refinement
Dislocation slip
Enhanced mechanical performance of gradient-structured CoCrFeMnNi high-entropy alloys induced by industrial shot-blasting
期刊论文
RARE METALS, 2023, 卷号: 42, 期号: 3, 页码: 982-993
Authors:
Zhang, MingZhi
;
Zhang K(张坤)
;
Song, KaiKai
;
Zou, XiaoYu
;
Song, WeiDong
;
Li, KeFeng
;
Hu, LiNa
;
Zhang, ZeQun
;
Eckert, Juergen
Adobe PDF(10570Kb)
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  |  
Submit date:2023/02/03
High-entropy alloy
Shot blasting
Gradient structure
Mechanical property
Deformation mechanism
Nanograin formation and cracking mechanism in Ti alloys under very high cycle fatigue loading
期刊论文
INTERNATIONAL JOURNAL OF FATIGUE, 2023, 卷号: 167, 页码: 10
Authors:
Sun CQ(孙成奇)
;
Wu H(仵涵)
;
Chi, Weiqian
;
Wang, Wenjing
;
Zhang, Guang-Ping
Adobe PDF(22393Kb)
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View/Download:128/5
  |  
Submit date:2023/01/12
Titanium alloy
Very high cycle fatigue
Twinning
Nanograins
Cracking mechanism