Please use this identifier to cite or link to this item: http://oar.a-star.edu.sg:80/jspui/handle/123456789/1264
Title: An experimental and simulation study on build thickness dependent microstructure for electron beam melted Ti-6Al-4V
Other Titles: Journal of Alloys and Compounds
Authors: Tan, Xipeng
Kok, Yihong
Tan, Yu Jun
Vastola, Guglielmo
Pei, Qing Xiang
Zhang, Gang
Zhang, Yong-Wei
Leong, Kak Fai
Chua, Chee Kai
Issue Date: 10-Jun-2015
Citation: Xipeng Tan, Yihong Kok, Yu Jun Tan, Guglielmo Vastola, Qing Xiang Pei, Gang Zhang, Yong-Wei Zhang, Shu Beng Tor, Kah Fai Leong, Chee Kai Chua, An experimental and simulation study on build thickness dependent microstructure for electron beam melted Ti–6Al–4V, Journal of Alloys and Compounds, Volume 646, 15 October 2015, Pages 303-309, ISSN 0925-8388, http://dx.doi.org/10.1016/j.jallcom.2015.05.178.
Abstract: Build thickness dependent microstructure of electron beam melted (EBM®) Tie6Ale4V has been investigated from both experiment and simulation using four block samples with thicknesses of 1, 5, 10 and 20 mm. We observe a mixed microstructure of alternate a/b with some a0 martensite inside the 1 mm-thick sample. By contrast, only the alternate a/b microstructure with both colony and basket- weave morphologies occurs inside the 5 mm-, 10 mm- and 20 mm-thick samples. It is found that b spacing is constantly increased with the build thickness, leading to an obvious decrease in microhard- ness. Finite element method (FEM) simulations show that cooling rates and thermal profiles during EBM process are favorable for the formation of martensite. Moreover, full-scale FEM simulations reveal that the average temperature inside the samples is higher as the build thickness increases. It suggests that martensitic decomposition is faster in thicker samples, which is in good agreement with the experi- mental observations.
URI: http://oar.a-star.edu.sg:80/jspui/handle/123456789/1264
ISSN: 0925-8388
Published As: http://dx.doi.org/10.1016/j.jallcom.2015.05.178
Embargo Lift Date: 10-Jun-2017
Appears in Collections:Institute of High Performance Computing

Files in This Item:
File Description SizeFormat 
NTU-IHPC paper on EBM 06052015.doc2.13 MBMicrosoft WordView/Open


This item is licensed under a Creative Commons License Creative Commons

Admin Tools