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Spindle speed in friction surfacing of 316L stainless steel – How it affects the microstructure, hardness and pitting corrosion resistance Journal article
Surface and Coatings Technology, 2019,Volume: 361,Page: 324-341
Authors:  D. Guo;  C.T. Kwok;  S.L.I. Chan
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Austenitic Stainless Steel  Dynamic Recrystallization  Friction Surfacing  Hardness, Pitting Corrosion  
Enhancement in hardness and corrosion resistance of AISI 420 martensitic stainless steel via friction stir processing Journal article
Surface and Coatings Technology, 2019,Volume: 357,Page: 339-347
Authors:  L. Pan;  C.T. Kwok;  K.H. Lo
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Corrosion  Friction Stir Processing  Hardness  Martensitic Stainless Steel  
Fabrication of stainless steel 316L/TiB2 composite coating via friction surfacing Journal article
Surface and Coatings Technology, 2018,Volume: 350,Page: 936-948
Authors:  D. Guo;  C.T. Kwok;  S.L.I. Chan
Favorite  |  View/Download:3/0  |  Submit date:2019/02/14
Crystallography  Friction Surfacing  Metal Matrix Composite  Pitting Corrosion  Stainless Steel  Titanium Diboride  
Laser surface alloying of copper with titanium: Part I. Electrical wear resistance in dry condition. Part II. Electrical wear resistance in wet and corrosive condition Journal article
Surface and Coatings Technology, 2016,Volume: 297,Page: 58-73
Authors:  C.T. Kwok;  P.K. Wong;  H.C. Man
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Electrical Sliding Wear  Hardness  Intermetallic Phases  Laser Surface Alloying  
Microstructure and corrosion behavior of laser surface-melted high-speed steels Journal article
Surface and Coatings Technology, 2007,Volume: 202,Issue: 2,Page: 336-348
Authors:  C.T. Kwok;  F.T. Cheng;  H.C. Man
Favorite  |  View/Download:4/0  |  Submit date:2018/10/30
Corrosion  Hardness  High-speed Steels  Laser Surface Melting  Microstructure  
Cavitation erosion and corrosion behaviors of laser-aluminized mild steel Journal article
Surface and Coatings Technology, 2006,Volume: 200,Issue: 11,Page: 3544-3552
Authors:  C.T. Kwok;  F.T. Cheng;  H.C. Man
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Aisi 1050 Mild Steel  Aluminizing  Cavitation Erosion  Corrosion  Laser Surface Alloying  Reinforcement  
Effect of processing conditions on the corrosion performance of laser surface-melted AISI 440C martensic stainless steel Journal article
Surface and Coatings Technology, 2003,Volume: 166,Issue: 2-3,Page: 221-230
Authors:  C.T. Kwok;  K.H. Lo;  F.T. Cheng;  H.C. Man
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Laser Surface Melting  Martensic Stainless Steel  Nd  Pitting Corrosion  Yag Laser  
Improvement of cavitation erosion resistance of AISI 316 stainless steel by laser surface alloying using fine WC powder Journal article
Surface and Coatings Technology, 2003,Volume: 165,Issue: 3,Page: 258-267
Authors:  K.H. Lo;  F.T. Cheng;  C.T. Kwok;  H.C. Man
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Aisi 316 Stainless Steel  Cavitation Erosion  Laser Surface Alloying  Tungsten Carbide  
Laser-fabricated Fe-Ni-Co-Cr-B austenitic alloy on steels. Part II. Corrosion behaviour and corrosion-erosion synergism Journal article
Surface and Coatings Technology, 2001,Volume: 145,Issue: 1-3,Page: 206-214
Authors:  C.T. Kwok;  F.T. Cheng;  H.C. Man
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Cavitation Erosion-corrosion  Corrosion  Steels  Synergism  
Laser-fabricated Fe-Ni-Co-Cr-B austenitic alloy on steels. Part I. Microstructures and cavitation erosion behaviour Journal article
Surface and Coatings Technology, 2001,Volume: 145,Issue: 1-3,Page: 194-205
Authors:  C.T. Kwok;  F.T. Cheng;  H.C. Man
Favorite  |  View/Download:2/0  |  Submit date:2019/02/14
Cavitation Erosion  Laser Surface Alloying  Martensitic Transformability  Stacking-fault Energy  Steels