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Pitting corrosion behavior of friction-surfaced 17-4PH stainless steel coatings with and without subsequent heat treatment Journal article
Corrosion Science, 2022
Authors:  D. Guo;  J. Chen;  X. Chen;  Q. Shi;  V.A.M. Cristino;  C.T. Kwok;  L.M. Tam;  H. Qian;  D. Zhang;  X. Li
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Surface hardness and corrosion behavior of laser surface-alloyed Ti6Al4V with copper Journal article
Surface and Coatings Technology, 2022,Volume: 444
Authors:  Qiao, Q.;  Tam, L. M.;  Cristino, V. A.M.;  Kwok, C. T.
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Copper  Corrosion  Hardness  Laser Surface Alloying  Ti6al4v  
Friction surfacing of precipitation hardening stainless steel coatings for cavitation erosion resistance Journal article
Surface and Coatings Technology, 2022,Volume: 434
Authors:  Guo, D.;  Chen, J.;  Cristino, V. A.M.;  Kwok, C. T.;  Tam, L. M.;  Li, W.;  Yang, G.;  Qian, H.;  Zhang, D.;  Li, X.
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17-4ph Stainless Steel  Cavitation Erosion  Friction Surfacing  Nano-indentation  Post-aging  
Laser surface alloying of copper with Cr/Ti/CNT for enhancing surface properties Journal article
Journal of Materials Research and Technology, 2022,Volume: 17,Page: 560-573
Authors:  Yang, Y. W.;  Cristino, V. A.M.;  Tam, L. M.;  Lo, K. H.;  Kwok, C. T.
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Composite  Corrosion  Hardness  Laser Surface Alloying  Wear  
Pitting corrosion behavior of friction-surfaced 17-4PH stainless steel coatings with and without subsequent heat treatment Journal article
Corrosion Science, 2021,Volume: 193
Authors:  Guo, D.;  Chen, J.;  Chen, X.;  Shi, Q.;  Cristino, V. A.M.;  Kwok, C. T.;  Tam, L. M.;  Qian, H.;  Zhang, D.;  Li, X.
Adobe PDF | Favorite |  | TC[WOS]:4 TC[Scopus]:4 | Submit date:2021/12/08
17-4ph Stainless Steel  Friction Surfacing  Metastable Pits  Pitting Corrosion  Post-aging  
Multi-mode scanning electrochemical microscopic study of microbiologically influenced corrosion mechanism of 304 stainless steel by thermoacidophilic archaea Journal article
Corrosion Science, 2021,Volume: 191
Authors:  Qian, H. C.;  Chang, W. W.;  Cui, T. Y.;  Li, Z.;  Guo, D. W.;  Kwok, C. T.;  Tam, L. M.;  Zhang, D. W.
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A. microbiologicA.ly Influenced Corrosion  B. Stainless Steels  C. sC.nning eleC.roC.emiC.l miC.osC.py  
Chloride stress corrosion cracking of a non-standard, ‘Borderline’ Chromium-Manganese stainless steel – Problems of counterfeits and substandard materials Journal article
Engineering Failure Analysis, 2021,Volume: 127
Authors:  Chu, K. H.;  Lam, C. C.;  Sun, Y. F.;  Cristino, V. A.M.;  Kwok, C. T.;  Pan, H.;  Lo, K. H.
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Chloride Stress Corrosion Cracking  Chromium-manganese Stainless Steel  Counterfeit  Slow Strain Rate Test  
Chloride Stress Corrosion Cracking of a Non-Standard, ‘Borderline’ Chromium-Manganese Stainless Steel – Problems of Counterfeits and Substandard Materials Journal article
Engineering Failure Analysis, 2021,Volume: 127,Page: 105562--
Authors:  Chu, K. H.;  Lam, C. C.;  Sun, Y. F.;  Cristino, V.;  Kwok, C. T.;  Pan, H.;  Lo, K. H.
Adobe PDF | Favorite |  | TC[WOS]:0 TC[Scopus]:0 | Submit date:2022/07/27
Chromium-manganese Stainless Steel  Chloride Stress Corrosion Cracking  Slow Strain Rate Test  Counterfeit  
Friction surfacing of AISI 904L super austenitic stainless steel coatings: Microstructure and properties Journal article
Surface and Coatings Technology, 2021,Page: 126811----
Authors:  Guo, D.W.;  Kwok, C. T.;  Chan, S.L.I.;  Tam, L. M.
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Friction surfacing  Super austenitic stainless steel  Pitting corrosion  Hardness  
Friction surfacing of AISI 904L super austenitic stainless steel coatings: Microstructure and properties Journal article
Surface and Coatings Technology, 2021,Volume: 408
Authors:  Guo,D.;  Kwok,C. T.;  Chan,S. L.I.;  Tam,L. M.
Favorite |  | TC[WOS]:5 TC[Scopus]:5 | Submit date:2021/03/09
Friction Surfacing  Hardness  Pitting Corrosion  Super Austenitic Stainless Steel