3D electron backscatter diffraction study of α lath morphology in additively manufactured Ti-6Al-4V

Thumbnail Image
Date
2020-11-01
Authors
DeMott, Ryan
Kong, Charlie
Liao, Xiaozhou
Ringer, Simon
Primig, Sophie
Major Professor
Advisor
Committee Member
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract

Titanium alloys exhibit complex, multi-phase microstructures which form during liquid-solid and solid-solid phase transformations. These phase transformations govern the microstructural evolution and are potentially more complex during additive manufacturing due to large thermal gradients and inhomogeneities. The prototypical fundamental unit of titanium microstructures are the α laths, and investigations into their three-dimensional morphology may provide new insights. A prior β-grain boundary, 3-variant clusters and interconnected laths were studied in 3D in electron-beam printed Ti-6Al-4V using a plasma FIB. These key features are of interest for studying variant selection in additive manufacturing.

Series Number
Journal Issue
Is Version Of
Versions
Series
Academic or Administrative Unit
Type
article
Comments

This article is published as DeMott, Ryan, Peter Collins, Charlie Kong, Xiaozhou Liao, Simon Ringer, and Sophie Primig. "3D electron backscatter diffraction study of α lath morphology in additively manufactured Ti-6Al-4V." Ultramicroscopy 218 (2020): 113073. DOI: 10.1016/j.ultramic.2020.113073. Posted with permission.

Rights Statement
Copyright
Wed Jan 01 00:00:00 UTC 2020
Funding
DOI
Supplemental Resources
Collections