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Cause analysis of the cooler leakage in a stirling engine 期刊论文
ENGINEERING FAILURE ANALYSIS, 2022, 卷号: 142, 页码: 11
Authors:  Zhang, H. Y.;  Xu, W.;  Zhu, T. Y.;  Qu, S.;  Wang, X. G.;  Dong, C.;  Zhang, Z. F.
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Stirling engine  Cooler  316L  Hydrogen environment embrittle  Bright annealing  
Cause analysis of the cooler leakage in a stirling engine 期刊论文
ENGINEERING FAILURE ANALYSIS, 2022, 卷号: 142, 页码: 11
Authors:  Zhang, H. Y.;  Xu, W.;  Zhu, T. Y.;  Qu, S.;  Wang, X. G.;  Dong, C.;  Zhang, Z. F.
Favorite  |  View/Download:68/0  |  Submit date:2023/05/09
Stirling engine  Cooler  316L  Hydrogen environment embrittle  Bright annealing  
Effect of annealing and build direction on microarc oxidation coatings and its apatite induction ability of Ti6Al4VE alloy manufactured by selective laser melting 期刊论文
JOURNAL OF MATERIALS RESEARCH, 2022, 页码: 13
Authors:  Liu, Y. C.;  Xu, T. W.;  Zhang, S. S.;  Lv, B. J.;  Ji, H. B.
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Effect of annealing and build direction on microarc oxidation coatings and its apatite induction ability of Ti6Al4VE alloy manufactured by selective laser melting 期刊论文
JOURNAL OF MATERIALS RESEARCH, 2022, 页码: 13
Authors:  Liu, Y. C.;  Xu, T. W.;  Zhang, S. S.;  Lv, B. J.;  Ji, H. B.
Favorite  |  View/Download:17/0  |  Submit date:2023/05/09
Quasi-in-situ observing the rare earth texture evolution in an extruded Mg-Zn-Gd alloy with bimodal microstructure 期刊论文
JOURNAL OF MAGNESIUM AND ALLOYS, 2021, 卷号: 9, 期号: 5, 页码: 1797-1805
Authors:  Jiang, M. G.;  Xu, C.;  Yan, H.;  Nakata, T.;  Chen, Z. W.;  Lao, C. S.;  Chen, R. S.;  Kamado, S.;  Han, E. H.
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Magnesium alloy  Rare earth texture  Extrusion  Annealing  Recrystallization  
Glyceryl trinitrate and caprylic acid for the mitigation of the Desulfovibrio vulgaris biofilm on C1018 carbon steel 期刊论文
WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY, 2016, 卷号: 32, 期号: 2, 页码: -
Authors:  Li, Y.;  Zhang, P.;  Cai, W.;  Rosenblatt, J. S.;  Raad, I. I.;  Xu, D.;  Gu, T.;  xudake@imr.ac.cn;  gu@ohio.edu
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Biofilm  Sulfate Reducing Bacteria  Biocide  Glyceryl Trinitrate  Caprylic Acid  Microbiologically Influenced Corrosion  
Stress Corrosion Cracking of X80 Steel in the Presence of Sulfate-reducing Bacteria 期刊论文
Journal of Materials Science & Technology, 2015, 卷号: 31, 期号: 4, 页码: 413-422
Authors:  T. Q.;  Yan Wu, M. C.;  Zeng, D. C.;  Xu, J.;  Sun, C.;  Yu, C. K.;  Ke, W.
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Carbon Steel  Microbiologically Influenced Corrosion (Mic)  Stress  Corrosion Cracking (Scc)  Carbon-steel  Pipeline Steel  Soil Solution  Microbiological Corrosion  Hydrogen Embrittlement  Structural-steels  High-strength  Low-alloy  Behavior  Biofilm  
Microbiologically Induced Corrosion of X80 Pipeline Steel in a Near-Neutral pH Soil Solution 期刊论文
Acta Metallurgica Sinica-English Letters, 2015, 卷号: 28, 期号: 1, 页码: 93-102
Authors:  T. Q.;  Yan Wu, M. C.;  Zeng, D. C.;  Xu, J.;  Yu, C. K.;  Sun, C.;  Ke, W.
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Sulfate-reducing Bacteria  Pipeline Steel X80  Electrochemical Impedance  Spectroscopy (Eis)  Scanning Electron Microscopy  Sulfate-reducing Bacteria  Electrochemical Impedance Spectroscopy  Carbon-steel  Stainless-steel  Natural Seawater  Behavior  Biofilm  Cracking  304-stainless-steel  Environment  
Hydrogen permeation of X80 steel with superficial stress in the presence of sulfate-reducing bacteria 期刊论文
Corrosion Science, 2015, 卷号: 91, 页码: 86-94
Authors:  T. Q.;  Yan Wu, C.;  Zeng, D. C.;  Xu, J.;  Sun, C.;  Yu, C. K.;  Ke, W.
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Carbon Steel  Potentiostatic  Xrd  Hydrogen Permeation  Effects Of  Strain  Microbiological Corrosion  High-strength Steel  Electrochemical Impedance Spectroscopy  Microbiologically Induced Corrosion  X-ray-diffraction  Pipeline Steel  Carbon-steel  Induced Cracking  Cathodic Protection  Stainless-steel  Sea Environment  
Stress corrosion of pipeline steel under occluded coating disbondment in a red soil environment 期刊论文
Corrosion Science, 2015, 卷号: 93, 页码: 27-38
Authors:  M. C.;  Sun Yan, C.;  Xu, J.;  Wu, T. Q.;  Yang, S.;  Ke, W.
Favorite  |  View/Download:97/0  |  Submit date:2015/05/08
Carbon Steel  Stress Corrosion  Sem  Crevice Corrosion  Scanning Kelvin Probe  Neutral Ph  Cathodic Protection  Crack-growth  Behavior  Electrolyte  Mechanism  Initiation  Beneath  Layer