Developing Cu modified Ti6Al4V alloys with a combination of high strength and ductility by electron beam freeform fabrication
Author:
Publisher
Elsevier BV
Subject
Surfaces, Coatings and Films,Condensed Matter Physics,Instrumentation
Reference29 articles.
1. Hot-wire arc additive manufacturing Ti–6.5Al–2Zr–1Mo–1V titanium alloy: pore characterization, microstructural evolution, and mechanical properties;Lu;J. Alloys Compd.,2020
2. Anisotropy and heterogeneity of microstructure and mechanical properties in metal additive manufacturing: a critical review;Kok;Mater. Des.,2018
3. Graded microstructure and mechanical properties of additive manufactured Ti–6Al–4V via electron beam melting;Tan;Acta Mater.,2015
4. Microstructure and mechanical properties of Ti–6Al–4V alloy fabricated using electron beam freeform fabrication;Xu;Vacuum,2019
5. Effect of beam power on the distribution statues of aligned TiBw and tensile behavior of trace boron-modified Ti6Al4V alloy produced by electron beam freeform fabrication;Tao;Vacuum,2020
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1. A novel titanium alloy for load-bearing biomedical implants: Evaluating the antibacterial and biocompatibility of Ti536 produced via electron beam powder bed fusion additive manufacturing process;Biomaterials Advances;2024-10
2. Microstructure and tensile properties of Ti6Al4V with layered structures fabricated by electron beam directed energy deposition;Vacuum;2024-09
3. Effect of Multiple Thermal Cycles on Microstructure and Mechanical Properties of Cu Modified Ti64 Thin Wall Fabricated by Wire-Arc Directed Energy Deposition;Acta Metallurgica Sinica (English Letters);2024-08-14
4. Effects of Al and V on deformation behavior and microscopic mechanism of titanium alloy at ultra-low temperature using molecular dynamics;Journal of Physics: Conference Series;2024-02-01
5. Phase transformation pathways in a Ti-5.9Cu alloy modified with Fe and Al;Journal of Materials Research and Technology;2023-11
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