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Faculty of Scien... [7]
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TAM LAP MOU [6]
KWOK CHI TAT [5]
VALENTINO ANOK M... [1]
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Journal article [6]
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2023 [1]
2022 [4]
2021 [2]
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CORROSION SCIENC... [3]
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新型耐蝕耐磨機械合金化塗層的制備... [7]
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Experimental Investigation of Heat Transfer and Pressure Drop Characteristics for Vertical Downflow using Traditional and 3D-printed Mini tubes
Conference paper
Chen, Jia Hang, Yang, Yi Fan, Lam, Lam, Zeng, Min, Ma, Ting, Tam, Lap Mou, Ghajar, Afshin J.. Experimental Investigation of Heat Transfer and Pressure Drop Characteristics for Vertical Downflow using Traditional and 3D-printed Mini tubes[C], 2023.
Authors:
Chen, Jia Hang
;
Yang, Yi Fan
;
Lam, Lam
;
Zeng, Min
;
Ma, Ting
; et al.
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TC[Scopus]:
5
|
Submit date:2022/08/30
Heat Transfer
Pressure Drop
3d Printed Mini Tube
Transition
Pitting corrosion behavior of friction-surfaced 17-4PH stainless steel coatings with and without subsequent heat treatment
Journal article
D. Guo, J. Chen, X. Chen, Q. Shi, V.A.M. Cristino, C.T. Kwok, L.M. Tam, H. Qian, D. Zhang, X. Li. Pitting corrosion behavior of friction-surfaced 17-4PH stainless steel coatings with and without subsequent heat treatment[J]. CORROSION SCIENCE, 2022, 193, 109887.
Authors:
D. Guo
;
J. Chen
;
X. Chen
;
Q. Shi
;
V.A.M. Cristino
; et al.
Adobe PDF
|
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|
TC[WOS]:
19
TC[Scopus]:
19
IF:
7.4
/
7.9
|
Submit date:2022/08/29
17-4ph Stainless Steel
Friction Surfacing
Metastable Pits
Pitting Corrosion
Post-aging
A study on formation mechanism of friction-surfaced stainless steel coating via a stop-action method
Journal article
Guo, D., Lam, W. I., Kwok, C. T., Chan, S. L.I., Li, W., G. Yang, L. M. Tam. A study on formation mechanism of friction-surfaced stainless steel coating via a stop-action method[J]. Surface and Coatings Technology, 2022, 441, 128511.
Authors:
Guo, D.
;
Lam, W. I.
;
Kwok, C. T.
;
Chan, S. L.I.
;
Li, W.
; et al.
Favorite
|
TC[WOS]:
2
TC[Scopus]:
2
IF:
5.3
/
4.9
|
Submit date:2022/06/14
Formation Mechanism
Friction Surfacing
Microstructure
Stainless Steel Coating
Texture
Friction surfacing of precipitation hardening stainless steel coatings for cavitation erosion resistance
Journal article
D. Guo, J. Chen, V. A.M. Cristino, C. T. Kwok, L. M. Tam, W. Li, G. Yang, H. Qian, D. Zhang, X. Li. Friction surfacing of precipitation hardening stainless steel coatings for cavitation erosion resistance[J]. Surface and Coatings Technology, 2022, 434, 128206.
Authors:
D. Guo
;
J. Chen
;
V. A.M. Cristino
;
C. T. Kwok
;
L. M. Tam
; et al.
Adobe PDF
|
Favorite
|
TC[WOS]:
14
TC[Scopus]:
16
IF:
5.3
/
4.9
|
Submit date:2022/03/28
17-4ph Stainless Steel
Cavitation Erosion
Friction Surfacing
Nano-indentation
Post-aging
Investigation of microbiologically influenced corrosion inhibition of 304 stainless steel by D-cysteine in the presence of Pseudomonas aeruginosa
Journal article
Qian, H. C., Chang, W. W., Liu, W. L., Cui, T. Y., Li, Z., Guo, D. W., Kwok, C. T., Tam, L. M., Zhang, D. W.. Investigation of microbiologically influenced corrosion inhibition of 304 stainless steel by D-cysteine in the presence of Pseudomonas aeruginosa[J]. Bioelectrochemistry, 2022, 143, 107953.
Authors:
Qian, H. C.
;
Chang, W. W.
;
Liu, W. L.
;
Cui, T. Y.
;
Li, Z.
; et al.
Favorite
|
TC[WOS]:
21
TC[Scopus]:
23
IF:
4.8
/
4.5
|
Submit date:2022/03/04
A. microbiologicA.ly Influenced Corrosion
B. Stainless Steel
C. d-C.steine
D. Scanning Electrochemical Microscopy
Pitting corrosion behavior of friction-surfaced 17-4PH stainless steel coatings with and without subsequent heat treatment
Journal article
Guo, D., Chen, J., Chen, X., Shi, Q., Cristino, V. A.M., Kwok, C. T., Tam, L. M., Qian, H., Zhang, D., Li, X.. Pitting corrosion behavior of friction-surfaced 17-4PH stainless steel coatings with and without subsequent heat treatment[J]. CORROSION SCIENCE, 2021, 193, 109887.
Authors:
Guo, D.
;
Chen, J.
;
Chen, X.
;
Shi, Q.
;
Cristino, V. A.M.
; et al.
Adobe PDF
|
Favorite
|
TC[WOS]:
19
TC[Scopus]:
19
IF:
7.4
/
7.9
|
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
Qian, H. C., Chang, W. W., Cui, T. Y., Li, Z., Guo, D. W., Kwok, C. T., Tam, L. M., Zhang, D. W.. Multi-mode scanning electrochemical microscopic study of microbiologically influenced corrosion mechanism of 304 stainless steel by thermoacidophilic archaea[J]. CORROSION SCIENCE, 2021, 191, 109751.
Authors:
Qian, H. C.
;
Chang, W. W.
;
Cui, T. Y.
;
Li, Z.
;
Guo, D. W.
; et al.
Favorite
|
TC[WOS]:
23
TC[Scopus]:
25
IF:
7.4
/
7.9
|
Submit date:2021/12/08
A. microbiologicA.ly Influenced Corrosion
B. Stainless Steels
C. sC.nning eleC.roC.emiC.l miC.osC.py