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Keyword [Ti6Al4V]
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1. Research Hydrogen-free Carbonizing And Hydrogen-free Carbonitriding On Titanium And Titanium Alloy Ti6A14V By Double Glow Plasma Discharge
2. Formmation Mechanism And Tribological Behavior Of Microarc Oxidation Coatings On Ti6Al4V Alloy
3. Study On Surface Alloying Processing By Double Glow Plasma Alloying Technology To Improve The Tribological Properties Of Ti6Al4V Alloy
4. Study On The Hydrogen Enhanced Plasticity Mechanism And Deformation Behaviors Of Titanium Alloys At High Temperatures
5. Influence Of Thermo Hydrogen Treatment On Microstructural Evolution And High Temperature Deformation Behavior Of Titanium Alloys
6. Study On Ti6Al4V High-speed Machining Mechanism Under Different Cooling Conditions
7. Fundamental Research On Melt Hydrogenation Of Titanium Alloys With TiH2 As The Additives
8. SiO2 Film And Ni-Si Coating For Protection Of Titanium Alloy Against High Temperature Oxidation And Corrosion
9. Microstructure And Properties Of TI6AL4V Alloy Prepared By Magnetic Pulse Compaction And Sintering Of Hydrogenated Powder
10. Synthesis And Characters Of Hydroxyapatite Coating By Electrochemical Methods
11. Study On Tribological Behavior And Tool Life In Ti6Al4V High Performance Machining
12. Study On The Impact Wear Behaviors Of Ti6a14v Titanium Alloy And Surface Modification Layers
13. Surface Modification Research. Ta And Ag The Ion Implantation Ti6A14V Alloy
14. Action Mechanism Of Cutting Tool Edge And Application In Precision Machining Ti6Al4V
15. Wear Characteristic And Performance Of Cutting Tool In High-efficiency Machining Ti6Al4V
16. Basic Research On Ti6Al4V Selective Laser Melting And Combustion Synthesis Welding With Ti-C-Al
17. On The Metallic Materials With Ti-matrix Irradiated By High-Intensity Pulsed Ion Beams
18. Study On The Improvement In Surface Properties Of Metal And Bonding Of Metal-Bioceramic By Laser Gas Nitriding
19. Fretting Corrosion Characteristics Of Titanium And Titanium Alloys In Three Mediums
20. Surface Nanocrystallization And Properties Of Ti6Al4V And Commercially Pure Ti
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