Controlling grain size, morphology and texture in additively manufactured β-titanium alloy with super transus hot isostatic pressing

Author:

Ng C.H.,Bermingham M.J.,Dargusch M.S.

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Engineering (miscellaneous),General Materials Science,Biomedical Engineering

Reference71 articles.

1. G. Lütjering, J.C. Williams, Titanium, Springer Science & Business Media, 2007.

2. G. Welsch, R. Boyer, E. Collings, Materials properties handbook: titanium alloys, ASM international, 1993.

3. Development of Ti-Mo-Fe alloys combining different plastic deformation mechanisms for improved strength-ductility trade-off and high work hardening rate;Bortolan;J. Alloy. Compd.,2022

4. Endothelial cell responses to a highly deformable titanium alloy designed for vascular stent applications;Ion;J. Funct. Biomater.,2021

5. Beta titanium alloys with very high ductility induced by complex deformation mechanisms: A new material perspective for coronary stent applications;Sun;Solid State Phenom., Trans. Tech. Publ.,2011

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