Material Characterisation and Computational Thermal Modelling of Electron Beam Powder Bed Fusion Additive Manufacturing of Ti2448 Titanium Alloy
Autor: | Shujun Li, Rui Yang, Mingming Tong, Wenyou Zhang, Qiushuang Wang, Hao Yulin, Hou Wentao, Noel M. Harrison, Hao Wang |
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Rok vydání: | 2021 |
Předmět: |
Technology
Work (thermodynamics) Materials science phase transformation Alloy computational modelling engineering.material Article electron beam powder bed fusion thermal process modelling Ti2448 alloy Phase (matter) Metastability Thermal General Materials Science Composite material Microscopy QC120-168.85 Fusion QH201-278.5 Titanium alloy Engineering (General). Civil engineering (General) Microstructure TK1-9971 Descriptive and experimental mechanics engineering Electrical engineering. Electronics. Nuclear engineering TA1-2040 |
Zdroj: | Materials Materials; Volume 14; Issue 23; Pages: 7359 Materials, Vol 14, Iss 7359, p 7359 (2021) |
ISSN: | 1996-1944 |
Popis: | Ti-24Nb-4Zr-8Sn (Ti2448) is a metastable β-type titanium alloy developed for biomedical applications. In this work, cylindrical samples of Ti2448 alloy have been successfully manufactured by using the electron beam powder bed fusion (PBF-EB) technique. The thermal history and microstructure of manufactured samples are characterised using computational and experimental methods. To analyse the influence of thermal history on the microstructure of materials, the thermal process of PBF-EB has been computationally predicted using the layer-by-layer modelling method. The microstructure of the Ti2448 alloy mainly includes β phase and a small amount of α″ phase. By comparing the experimental results of material microstructure with the computational modelling results of material thermal history, it can be seen that aging time and aging temperature lead to the variation of α″ phase content in manufactured samples. The computational modelling proves to be an effective tool that can help experimentalists to understand the influence of macroscopic processes on material microstructural evolution and hence potentially optimise the process parameters of PBF-EB to eliminate or otherwise modify such microstructural gradients. |
Databáze: | OpenAIRE |
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