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Finite Element Analysis of Fluid-Structure Interaction in a Model of an L-Type Mg Alloy Stent-Stenosed Coronary Artery System 期刊论文
METALS, 2022, 卷号: 12, 期号: 7, 页码: 17
Authors:  Chen, Yizhe;  Yang, Yuzhuo;  Wang, Hui;  Peng, Wenpeng;  Lu, Xunan;  Peng, Yijia;  Zheng, Feng;  Chen, Shanshan
Favorite  |  View/Download:33/0  |  Submit date:2022/09/16
L-type degradable magnesium alloy coronary artery stent  nonlinear finite element  fluid-structure interaction  distribution of stress and strain  

Tensile deformation behaviors of Ti-6.5Al-3.5Mo-1.5Zr-0.25Si alloy with different percentages of primary a phase

期刊论文

MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2022, 卷号: 842, 页码: 12
Authors:  Shao, Z.;  Pang, J. C.;  Zhang, Z. J.;  Liu, H. Q.;  Zhang, Z. Q.;  Li, S. X.;  Zhang, Z. F.
Favorite  |  View/Download:55/0  |  Submit date:2022/07/14
TC11 alloy  Percentage of primary alpha phase  Interrupted tensile test  Damage mechanism  Tensile strength  
Numerical Simulation of Crevice Corrosion of Stainless Steel-Titanium in NaCl Solution 期刊论文
COATINGS, 2022, 卷号: 12, 期号: 5, 页码: 12
Authors:  Ding, Jiawei;  He, Weiping;  Liu, Yuanhai;  Zhang, Chenyu;  Wang, Haitao;  Han, En-Hou
Favorite  |  View/Download:32/0  |  Submit date:2022/07/14
stainless steel  titanium  crevice corrosion  numerical simulation  multiphysics  
Effects of strain rate on low-cycle fatigue crack growth behavior of 316LN weld metal in high-temperature pressurized water 期刊论文
CORROSION SCIENCE, 2022, 卷号: 199, 页码: 10
Authors:  Ma, Yongjian;  Zhang, Ziyu;  Zhang, Xu;  Yin, Haifeng;  Liang, Bingbing;  Tan, Jibo;  Wu, Xinqiang;  Han, En-Hou;  Ke, Wei
Favorite  |  View/Download:39/0  |  Submit date:2022/07/01
Stainless steel  SEM  Corrosion fatigue  High temperature corrosion  Welding  
A new fatigue crack growth mechanism of high-strength steels 期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2022, 卷号: 840, 页码: 9
Authors:  Li, H. F.;  Zhang, P.;  Zhang, Z. F.
Favorite  |  View/Download:34/0  |  Submit date:2022/07/01
Fatigue crack growth  Three-dimensional X-ray  High-strength steels  Mixed mechanism  
Modulating fatigue property of in situ Ti-based metallic glass composites by changing dendrite composition 期刊论文
FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2022, 页码: 13
Authors:  Wang, Xiaodi;  Song, Shaolong;  Zhu, Zhengwang;  Zhang, Haifeng;  Ren, Xuechong
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dendrite composition  dislocation slipping  fatigue crack  fatigue property  martensitic transformation  metallic glass composite  
High-Cycle Fatigue Behavior and Fatigue Strength Prediction of Differently Heat-Treated 35CrMo Steels 期刊论文
METALS, 2022, 卷号: 12, 期号: 4, 页码: 14
Authors:  Yang, Mengqi;  Gao, Chong;  Pang, Jianchao;  Li, Shouxin;  Hu, Dejiang;  Li, Xiaowu;  Zhang, Zhefeng
Favorite  |  View/Download:37/0  |  Submit date:2022/07/01
35CrMo steel  high-cycle fatigue  damage mechanism  fatigue strength prediction  heat treatment  
Deformation-induced martensite in 304 stainless steel during cavitation erosion: Effect on passive film stability and the interaction between cavitation erosion and corrosion 期刊论文
TRIBOLOGY INTERNATIONAL, 2022, 卷号: 167, 页码: 9
Authors:  Li, Z. X.;  Zhang, L. M.;  Udoh, I. I.;  Ma, A. L.;  Zheng, Y. G.
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Cavitation erosion  Deformation-induced martensite  Pitting resistance  Interaction  

Toward superior fatigue and corrosion fatigue crack initiation resistance of Sanicro 28 pipe super austenitic stainless steel

期刊论文

JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2022, 卷号: 17, 页码: 1672-1685
Authors:  Amirifard, M.;  Hanzaki, A. Zarei;  Abedi, H. R.;  Eftekhari, N.;  Wang, Q.
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Super austenitic stainless steel  Low cycle fatigue  Corrosion-fatigue behavior  Microstructure  Damage mechanism  
Effect of Cavitation Intensity on the Cavitation Erosion Behavior of 316L Stainless Steel in 3.5 wt.% NaCl Solution 期刊论文
METALS, 2022, 卷号: 12, 期号: 2, 页码: 12
Authors:  Hu, Jiaxiu;  Zhang, Lianmin;  Ma, Aili;  Mao, Pingli;  Zheng, Yugui
Favorite  |  View/Download:41/0  |  Submit date:2022/07/01
316L stainless steel  cavitation erosion  cavitation intensity  passive films  repassivation property