21 results on '"Franchitti S."'
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2. The impact of Ti6Al4V powder reuse on the quality of electron beam powder bed fusion parts
3. Effect of recycling powder on the fatigue properties of AM Ti6Al4V
4. Correlation between real geometry and tensile mechanical behaviour for Ti6Al4V electron beam melted thin specimens
5. Green electrochemical polishing of EBM Ti6Al4V samples with preliminary fatigue results
6. Titanium/FRP hybrid sandwich: in-plane flexural behaviour of short beam specimens.
7. Influence of chemical machining on axial fatigue behaviour of electron beam melted Ti6Al4V parts
8. Manufacturing process effect on the bending characteristics of titanium-lattice/FRP hybrid structures
9. Titanium lattice structures manufactured by EBM process: Effect of skin material on bending characteristics
10. Ti6Al4V Parts Produced by Electron Beam Melting: Analysis of Dimensional Accuracy and Surface Roughness
11. Influence of processing parameters on microstructure and roughness of electron beam melted Ti-6Al-4V titanium alloy
12. Microstructural and micromechanical study of a Ti6Al4V component made by electron beam melting
13. Hybrid Metal/Composite Lattice Structures: Design for Additive Manufacturing
14. Ti6Al4V Parts Produced by Electron Beam Melting: Analysis of Dimensional Accuracy and Surface Roughness
15. Influence of dimension, building position, and orientation on mechanical properties of EBM lattice Ti6Al4V trusses
16. Enhanced cytocompatibility and mechanical properties of electron beam melted Ti-6Al-4V by friction stir processing
17. Chemical surface finishing of electron beam melted Ti6Al4V using HF-HNO3 solutions
18. Effects of the Surface Finish on Thin Specimens Made by Electron Beam Melting Technology
19. Friction stir welding of additively manufactured Ti-6Al-4V: Microstructure and mechanical properties
20. An Innovative Method to Analyse the Geometrical Accuracy of Ti6Al4V Octet-Truss Lattice Structures.
21. Energy consumption assessment in manufacturing Ti6Al4V electron beam melted parts post-processed by machining.
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