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Acta Materialia, ISSN 1359-6454, 12/2019, Volume 181, pp. 479 - 490
Fully lamellar Ti-6Al-4V alloys comprise body-centered cubic (BCC) β lamellae in large-sized, hexagonal close-packed (HCP) α colonies and exhibit outstanding... 
twinning | kinking | interface | toughness | Ti-6Al-4V
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 10/2019, p. 152615
Journal Article
Additive Manufacturing, ISSN 2214-8604, 10/2014, Volume 1-4, pp. 87 - 98
Ti–6Al–4V parts made using additive manufacturing processes such as selective laser melting (SLM) and electron beam melting (EBM) are subject to the inclusion... 
EBM | Defect | Ti–6Al–4V | Additive manufacturing | SLM | Ti-6Al-4V
Journal Article
Surface and Coatings Technology, ISSN 0257-8972, 11/2019, p. 125169
Journal Article
Materials & Design, ISSN 0264-1275, 10/2016, Volume 108, pp. 308 - 318
The morphology and substructure of α′ martensite in Ti-6Al-4V cuboid samples produced by selective laser melting (SLM) have been investigated to explore the... 
Selective laser melting | Microstructure | Ti-6Al-4V | Martensite | MATERIALS SCIENCE, MULTIDISCIPLINARY | DECOMPOSITION | COMPONENTS | MECHANICAL-PROPERTIES | MELTED TI-6AL-4V | LATH MARTENSITE | TEXTURE | EVOLUTION | TEMPERATURES | TITANIUM-ALLOYS | Twins | Alloys | Substructures | Process parameters | Formations | Titanium base alloys | Columnar structure | Dislocations | Laser beam melting
Journal Article
International Journal of Machine Tools and Manufacture, ISSN 0890-6955, 05/2018, Volume 128, pp. 1 - 20
Selective Laser Melting (SLM) is an additive manufacturing (AM) technique which has been heavily investigated for the processing of Ti-6Al-4V (Ti64) which is... 
Additive manufacturing | Selective laser melting | Ti-6Al-4V | Process parameters | Process optimisation | MICROSTRUCTURAL EVOLUTION | MANUFACTURED TI-6AL-4V | HEAT-TREATMENT | TITANIUM | MECHANICAL-PROPERTIES | ENGINEERING, MECHANICAL | RESIDUAL-STRESS REDUCTION | ENERGY-DENSITY | TEMPERATURE | SCAN STRATEGY | ENGINEERING, MANUFACTURING | ALLOY
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 04/2012, Volume 519, pp. 106 - 111
The effect of superficial CeO coating on the oxidation behavior of Ti-6Al-4V has been studied under isothermal and cyclic heating conditions in the temperature... 
coating | Ti-6Al-4V | Oxidation | CeO
Journal Article
Tribology International, ISSN 0301-679X, 01/2020, Volume 141, p. 105900
Titanium alloy is extremely difficult to machine due to the rapid tool wear. The influence of tool wear on surface topography and chip formation, during... 
Surface topography | Ti-6Al-4V | Tool wear | Chip formation
Journal Article
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, ISSN 0924-0136, 08/2019, Volume 270, pp. 216 - 227
The mechanical properties of Ti-6Al-4V alloy are very sensitive to its microstructure morphology. Commercially available Ti-6Al-4V was heat treated above and... 
Hot deformation | WORKING | Lamellar | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | PLASTIC-FLOW | EVOLUTION | Ti-6Al-4V | Equiaxed | TITANIUM-ALLOY | ENGINEERING, MANUFACTURING | ENGINEERING, INDUSTRIAL | TI-6AL-4V ALLOY | Constitutive equations
Journal Article
Materials Characterization, ISSN 1044-5803, 06/2019, Volume 152, pp. 162 - 168
A batch of six Ti-6Al-4V plates (5 mm thick, 45 mm wide, 220 mm high) were fabricated by selective electron beam melting (SEBM) and half of them were... 
Additive manufacturing | Ti-6Al-4V | Texture | Hot isostatic pressing
Journal Article
Materials & Design, ISSN 0264-1275, 11/2015, Volume 85, pp. 497 - 510
Laser cladding is a metal deposition technique used to fabricate or repair components made from high value metallic alloys. In the present work Ti–6Al–4V... 
Ti–6Al–4V | Laser cladding | Repair | Microstructure | Hardness | Ti-6Al-4V | MATERIALS SCIENCE, MULTIDISCIPLINARY | POWER | MECHANICAL-PROPERTIES | STAINLESS-STEEL | TEXTURE | EVOLUTION | DEPOSITED TI-6AL-4V | TITANIUM-ALLOYS | Construction | Tracking | Strategy | Laser beam cladding | Titanium base alloys | Deposition
Journal Article
Journal of Materials Processing Tech, ISSN 0924-0136, 03/2020, Volume 277, p. 116433
Additive manufacturing of titanium alloy Ti-6Al-4 V has significantly increased over the past few years, primarily due to its broad application over the... 
Mechanical properties | Additive manufacturing | Microstructure | Ti-6Al-4V | Friction stir welding
Journal Article
Journal of Materials Processing Tech, ISSN 0924-0136, 03/2020, Volume 277, p. 116462
Fully coupled ductile damage model considering strength-differential (SD) effect is proposed for simulation of metal forming processes for Ti-6Al-4V. The... 
Ti-6Al-4V alloy | Anisotropy | Ductile damage | Lode angle | SD effect
Journal Article
Materials & Design, ISSN 0264-1275, 12/2015, Volume 86, pp. 545 - 554
This study evaluates the mechanical properties of Ti–6Al–4 V samples produced by selective laser melting (SLM) and electron beam melting (EBM). Different... 
Mechanical properties | Additive manufacturing | Selective laser melting | Electron beam melting | Ti–6Al–4 V | Defects | Ti-6Al-4V | Energy density | Porosity | Titanium base alloys | Optimization | Laser beam melting
Journal Article
Materials & Design, ISSN 0264-1275, 04/2018, Volume 143, pp. 1 - 11
Selective laser melting (SLM) is an additive manufacturing process allowing for the production of metallic high performance materials and components with... 
Fatigue | Surface roughness | Selective laser melting | Ti-6Al-4V | Cooling channels | Defects | LASER | MATERIALS SCIENCE, MULTIDISCIPLINARY | COMPONENTS | PARAMETERS | MECHANICAL-PROPERTIES | LATTICE STRUCTURES | IMPROVEMENT | ADDITIVE MANUFACTURED TI-6AL-4V | SCAFFOLDS | MICROSTRUCTURE | TITANIUM-ALLOYS
Journal Article
Acta Physica Polonica A, ISSN 0587-4246, 07/2018, Volume 134, Issue 1, pp. 349 - 353
Titanium alloys have been extensively used in biomedical and aerospace applications, where the fatigue life and tribological behaviour are important. Shot... 
PHYSICS, MULTIDISCIPLINARY | TITANIUM | TI-6AL-4V
Journal Article
Tribology International, ISSN 0301-679X, 02/2015, Volume 82, pp. 20 - 27
Titanium alloys are characterized by poor tribological performance, and their conventional use has been restricted to non-tribological applications. Surface... 
Ti–6Al–4V alloy | Diamond-like carbon | Laser surface texturing | Graphitization | Ti-6Al-4V alloy | FRICTION | BEHAVIOR | AMORPHOUS-CARBON | MECHANICAL-PROPERTIES | ADHERENCE | ENGINEERING, MECHANICAL | IMPLANTATION | WEAR | COATINGS | TI-6AL-4V | Titanium alloys | Analysis | Tribology | Thin films | Dielectric films | Hardness | Dimpling | Lasers | Texturing | Sliding | Density | Titanium base alloys | Diamond-like carbon films
Journal Article
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