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Advanced Engineering Materials, ISSN 1438-1656, 11/2018, Volume 20, Issue 11, pp. 1800510 - n/a
The microstructure evolution of the Ti–6 wt% Al–4 wt% V alloy with increasing annealing time t at constant temperature T = 800 °C is studied. This temperature... 
coarsening | diffusion | grain size | titanium alloys | Alloys
Journal Article
Materials & Design, ISSN 0264-1275, 02/2019, Volume 164, p. 107552
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 06/2018, Volume 748, pp. 281 - 290
Selective laser melting (SLM), as a powder-bed-based additive manufacturing technology, is a promising technology for manufacturing metal parts with high... 
Cellular automaton | Microstructural prediction | Selective laser melting | Ti alloy | MANUFACTURED TI-6AL-4V | BEHAVIOR | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | CHEMISTRY, PHYSICAL | TITANIUM | MECHANICAL-PROPERTIES | RAPID SOLIDIFICATION | EVOLUTION | POWDER | NUMERICAL-SIMULATION | GRAIN-STRUCTURE
Journal Article
Journal of Materials Processing Tech, ISSN 0924-0136, 03/2016, Volume 229, pp. 659 - 667
Journal Article
Acta Materialia, ISSN 1359-6454, 05/2019, Volume 169, pp. 45 - 59
The yield strength (σ ) of Ti–6Al–4V alloy, additively manufactured via selective laser melting (SLM) of powder beds, can exceed 1000 MPa while possessing a... 
Titanium alloy | Mechanical properties | Fatigue | SLM | Heat-treatment | TRANSFORMATION | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | ADDITIVELY-MANUFACTURED TI-6AL-4V | MECHANICAL-PROPERTIES | ORIENTATION | TENSILE | PROPAGATION | Titanium alloys | Annealing | Fatigue testing machines | Anisotropy | Materials | Aerospace engineering
Journal Article
Surface and Coatings Technology, ISSN 0257-8972, 11/2018, Volume 353, pp. 32 - 40
Journal Article
Materials Science & Engineering A, ISSN 0921-5093, 06/2013, Volume 573, pp. 264 - 270
Selective electron beam melting (EBM) is a layer-by-layer additive manufacturing technique that shows great promise for fabrication of medical devices and... 
Titanium alloys | Mechanical characterization | Rapid solidification | Hardness measurement | Failure | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | NANOSCIENCE & NANOTECHNOLOGY | BIOMEDICAL APPLICATIONS | Mechanical properties | Hardness | Production processes
Journal Article
Materials Science & Engineering C, ISSN 0928-4931, 06/2019, Volume 99, pp. 552 - 562
In this work, two new α + β titanium alloys with low contents of ubiquitous and low-cost alloying elements (i.e., Mo and Fe) were designed on the basis of the... 
Mechanical properties | Electrochemical properties | Cytocompatibility | CCK-8 assay | Low-cost titanium alloy | DESIGN | MATERIALS SCIENCE, BIOMATERIALS | HIGH-STRENGTH | BEHAVIOR | LOW YOUNGS MODULUS | MECHANICAL-PROPERTIES | CORROSION-RESISTANCE | CR ALLOYS | MICROSTRUCTURE | TITANIUM-ALLOYS | Titanium - pharmacology | Stress, Mechanical | Alloys - pharmacology | Elastic Modulus | Biocompatible Materials - economics | X-Ray Diffraction | Cell Death - drug effects | Iron - pharmacology | Alloys - economics | Tensile Strength | Cell Line | Cell Survival - drug effects | Prosthesis Implantation | Costs and Cost Analysis | Electrochemical Techniques | Cell Size - drug effects | Biocompatible Materials - pharmacology | Molybdenum - pharmacology | Hardness | Cell Shape - drug effects | Animals | Corrosion | Cytoskeleton - metabolism | Mice | Dielectric Spectroscopy | Cytoskeleton - drug effects | Titanium alloys | Raw materials | Corrosion and anti-corrosives | Biomedical engineering | Cell proliferation | Surgical implants | Toxicity | Cytotoxicity | Iron | Plastic deformation | Titanium base alloys | Biomedical materials | Corrosion currents | Low cost | Titanium | Ferrous alloys | Biocompatibility | Alloys | Ultimate tensile strength | Implantation | Modulus of elasticity | Molybdenum | Corrosion resistance | Alloying elements | Equivalence | Electric arc melting | Electrochemistry | Cholecystokinin
Journal Article
Journal Article
Materials Science & Engineering A, ISSN 0921-5093, 04/2016, Volume 660, pp. 24 - 33
Laser melting deposition (LMD) and selective laser melting (SLM) are two major metal additive manufacturing technologies that explore the near-net shaping of... 
Mechanical properties | Laser melting deposition | Selective laser melting | Hybrid forming | Ti6Al4V | Titanium alloys | Epitaxy | Analysis | Hardness | Mechanical engineering | 3D printing | Fracture mechanics | Heat affected zone | Microstructure | Microhardness | Titanium base alloys | Elongation | Substrates | Laser beam melting
Journal Article
Rapid Prototyping Journal, ISSN 1355-2546, 10/2010, Volume 16, Issue 6, pp. 450 - 459
Journal Article
Corrosion Science, ISSN 0010-938X, 01/2016, Volume 102, pp. 484 - 489
•Corrosion of Ti-6Al-4V manufactured by selective laser melting was investigated.•SLM-produced alloy exhibits a worse corrosion resistance than Grade 5... 
B. X-ray diffraction | C. Passive films | B. EIS | B. Polarization | A. Titanium | Polarization | Passive films | DENTAL IMPLANT | MANUFACTURE | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | X-ray diffraction | EIS | FILMS | Titanium | RESISTANCE | TI6AL4V | NITRIDED TI-6AL-4V | MECHANICAL-BEHAVIOR | MICROSTRUCTURE | TITANIUM-ALLOYS | Corrosion and anti-corrosives | Alloys
Journal Article