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Materials Letters, ISSN 0167-577X, 11/2019, Volume 255, p. 126537
In this study, the compressive properties of selective laser melted (SLM) Ti6Al4V lattice structure were studied. Based on results and discussion, it was found... 
SLM | Lattice structure | Ti6Al4V | HIP
Journal Article
Tribology International, ISSN 0301-679X, 12/2018, Volume 128, pp. 240 - 247
Ti-6Al-4V alloy was laser textured with cross groove patterns and then coated with graphene or MoS2, evaluating its tribological behaviour. The samples were... 
Graphene | Laser surface texturing | Molybdenum disulphide | Ti6Al4V
Journal Article
by Ba, J and Zheng, X.H and Ning, R and Lin, J.H and Qi, J.L and Cao, J and Cai, W and Feng, J.C
Journal of the European Ceramic Society, ISSN 0955-2219, 04/2019, Volume 39, Issue 4, pp. 755 - 761
Brazing C/SiC composites to Ti6Al4V alloy is associated with the problem of high residual stress inducing low joining strength. To overcome this problem,... 
C/SiC | Braze | Negative thermal expansion | Ti6Al4V
Journal Article
Materials Letters, ISSN 0167-577X, 11/2019, Volume 255, p. 126541
Understanding processing-property relationships for directed-energy-deposition (DED) parts remains a major roadblock to widespread process implementation.... 
Compression | Additive manufacturing | Fatigue failure | LENS | Ti6Al4V
Journal Article
Applied Surface Science, ISSN 0169-4332, 2015, Volume 345, pp. 99 - 108
Ti6Al4V alloy was laser cladded with titanium, nickel and zirconia powders in different ratio using a 2 kW CW ytterbium laser system (YLS). The microstructures... 
TiNiZrO 2 | Tribocorrosion | Corrosion | Microstructure | Ti6Al4V
Journal Article
Journal of Materials Processing Tech, ISSN 0924-0136, 2009, Volume 209, Issue 8, pp. 3705 - 3713
The high strength to weight ratio and excellent corrosion resistance of titanium alloys allow diverse application in various fields including the medical and... 
Laser seam welding | Laser material processing | Ti6Al4V titanium alloys | CO2-LASER | MATERIALS SCIENCE, MULTIDISCIPLINARY | GAS-FLOW | PULSED-LASER | PENETRATION | TI-6AL-4V | PARAMETERS | ENGINEERING, MANUFACTURING | ENGINEERING, INDUSTRIAL
Journal Article
Applied Surface Science, ISSN 0169-4332, 07/2015, Volume 342, pp. 183 - 190
This paper investigates the effect of ZrO particle on the oxidation resistance and wear properties of coatings on a Ti6Al4V alloy generated using the micro-arc... 
Oxidaton resistance | ZrO | Wear resistance | particle | Micro-arc oxidation | Ti6Al4V
Journal Article
Materials and Design, ISSN 0264-1275, 12/2014, Volume 64, pp. 203 - 213
Selective laser melting (SLM) process allows fabricating strong, lightweight and complex metallic structures. To successfully produce metallic parts by SLM,... 
IMPROVEMENT | RAPID FABRICATION | MELTED TI6AL4V | POWDER | PARTS | MATERIALS SCIENCE, MULTIDISCIPLINARY | Titanium alloys
Journal Article
Materials Science & Engineering A, ISSN 0921-5093, 10/2019, Volume 766, p. 138319
Improving the ductility of manufactured Ti-based alloys by selective laser melting (SLM) while still maintaining the high mechanical strength is one of the... 
Microstructural control | Selective laser melting | Ductility | Tensile strength | Ti6Al4V alloy
Journal Article
Mechanics Research Communications, ISSN 0093-6413, 09/2019, Volume 100, p. 103400
With advances in additive manufacturing methods for metals with defined, complex shapes, the investigation of metallic lattice materials (metals with... 
Mechanical properties | Additive manufacture | Anisotropy | Lattices | Ti6Al4V
Journal Article
Surface & Coatings Technology, ISSN 0257-8972, 06/2017, Volume 320, pp. 452 - 457
Ti6Al4V coatings were deposited on Ti6Al4V substrates by using a high pressure cold spray system. Before deposition, the substrate surfaces were prepared with... 
Ti6Al4V substrate | Fatigue behavior | Surface finishing | High pressure cold spray | Ti6Al4V coating | Fatigue testing machines | Fatigue | Materials | Aerospace engineering
Journal Article
Journal of Materials Processing Tech, ISSN 0924-0136, 01/2020, Volume 275, p. 116354
Reaction-Assisted Diffusion Bonding (RADB) of NiTi to Ti6Al4V using either magnetron sputtered Ni/Ti nanomultilayers or Ni/Ti commercial microfoils as filler... 
Multilayers | NiTi | Nanoindentation | Diffusion bonding | Microfoils | Ti6Al4V | Synchrotron radiation
Journal Article
Surface & Coatings Technology, ISSN 0257-8972, 10/2019, Volume 376, p. 124787
Long service life of implants is of high importance to patients. This study deposited amorphous carbon (a-C) coatings on biomedical grade Ti6Al4V substrate... 
Biocompatibility | Plasma enhanced chemical vapor deposition | Amorphous carbon | Corrosion | Ti6Al4V
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 10/2019, p. 152536
Journal Article
Materials Letters, ISSN 0167-577X, 12/2019, Volume 256, p. 126571
Surfaces with porous micro-nanostructured networks on Ti6Al4V substrates were successfully fabricated via sandblast, acid-alkali etching treatment. Wettability... 
Hydroxyapatite | Multi-level nanostructure | Ti6Al4V | Biomaterials | Superhydrophilic
Journal Article
Applied Surface Science, ISSN 0169-4332, 09/2012, Volume 258, Issue 22, pp. 8570 - 8576
One-step plasma electrolytic oxidation (PEO) process in a graphite-dispersed phosphate electrolyte was used to prepare a graphite-containing oxide composite... 
Oxide coating | Friction and wear | Graphite | Plasma electrolytic oxidation | Ti6Al4V
Journal Article
Materials Science and Engineering: C, ISSN 0928-4931, 01/2020, Volume 106, p. 110289
Journal Article
Materials Science & Engineering A, ISSN 0921-5093, 08/2013, Volume 578, pp. 230 - 239
Ti–6Al–4V samples have been prepared by selective laser melting (SLM) with varied processing conditions. Some of the samples were stress-relieved or hot... 
Titanium alloys | Tensile behaviour | Selective laser melting | Microstructure | Hot isostatic pressing
Journal Article
Surface & Coatings Technology, ISSN 0257-8972, 01/2019, Volume 357, pp. 811 - 821
New self-lubricating laser-clad coatings were successfully fabricated on the surface of Ti6Al4V to improve its wear resistance. A new lubricating phase (TiS )... 
Self-lubricating coating | Laser cladding | Microstructure | Microhardness | Wear | PHYSICS, APPLIED | TEMPERATURE | ANTIWEAR COMPOSITE COATINGS | TI6AL4V ALLOY | LAYER | MATERIALS SCIENCE, COATINGS & FILMS
Journal Article
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