Fragmentation and Branch Elimination of Primary α′ Martensite in Additively Manufactured Ti-6Al-4V Alloy

Author:

Ahmed Mansur1,McNamara Fionnan2,Duggan Greg3,Tomonto Charles2,O’Donnell Garret E.1,Lupoi Rocco1

Affiliation:

1. Department of Mechanical, Manufacturing & Biomedical Engineering, Trinity College Dublin, The University of Dublin, D02 PN40 Dublin, Ireland

2. 3D Printing Centre of Excellence, Johnson & Johnson Services Inc., Miami, FL 33126, USA

3. DePuy Synthes, Loughbeg, Ringaskiddy, Co., P43 ED82 Cork, Ireland

Abstract

Fragmentation and branch elimination are generally noticed in the conventionally processed Ti-6Al-4V. Such a key morphological change produces a positive change in certain mechanical properties. We, for the first time, observe fragmentation and branch elimination of the primary α′ martensite in additively manufactured as-built Ti-6Al-4V and the effect of scan speed on these is studied. Nanovoids inside and on the surface of the primary α′ martensite are assumed to be the starting points of the fragmentation and branch elimination, respectively. At a lower scan speed (250 mm/s) a relatively shorter branch length than that of a higher scan speed (500 mm/s) is observed. Such change in the morphology of primary α′ martensite has positively impacted hardness. This has been discussed in terms of additive manufacturing parameters. Such a fundamental morphological change will further help the understanding of laser powder bed fusion metal additive manufacturing. The hardness of the samples is measured and correlated with the fragmentation of the primary α′ martensite.

Funder

Science Foundation Ireland

European Regional Development Fund

Ireland’s European Structural and Investment Fund

Science Foundation Ireland under Ireland’s European Structural and Investment Fund

3D Printing Centre of Excellence, Johnson & Johnson Services Inc., and DePuy Synthes

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

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