Evaluation of the mechanical compatibility of additively manufactured porous Ti–25Ta alloy for load-bearing implant applications N Soro, H Attar, E Brodie, M Veidt, A Molotnikov, MS Dargusch Journal of the mechanical behavior of biomedical materials 97, 149-158, 2019 | 120 | 2019 |
Remelt processing and microstructure of selective laser melted Ti25Ta EG Brodie, AE Medvedev, JE Frith, MS Dargusch, HL Fraser, ... Journal of Alloys and Compounds 820, 153082, 2020 | 76 | 2020 |
Low-cycle fatigue performance of remelted laser powder bed fusion (L-PBF) biomedical Ti25Ta EG Brodie, J Richter, T Wegener, T Niendorf, A Molotnikov Materials Science and Engineering: A 798, 140228, 2020 | 37 | 2020 |
Additive manufacturing of biomimetic Titanium-Tantalum lattices for biomedical implant applications N Soro, EG Brodie, A Abdal-hay, AQ Alali, D Kent, MS Dargusch Materials & Design 218, 110688, 2022 | 36 | 2022 |
Predicting the chemical homogeneity in laser powder bed fusion (LPBF) of mixed powders after remelting H Li, EG Brodie, C Hutchinson Additive Manufacturing 65, 103447, 2023 | 19 | 2023 |
Osteogenic potential of additively manufactured TiTa alloys EG Brodie, KJ Robinson, E Sigston, A Molotnikov, JE Frith ACS Applied Bio Materials 4 (1), 1003-1014, 2021 | 16 | 2021 |
Influence of a remelt scan strategy on the microstructure and fatigue behaviour of additively manufactured biomedical Ti65Ta efficiently assessed using small scale specimens EG Brodie, J Richter, T Wegener, A Molotnikov, T Niendorf International Journal of Fatigue 162, 106944, 2022 | 11 | 2022 |
A mechanical comparison of alpha and beta phase biomedical TiTa lattice structures EG Brodie, T Wegener, J Richter, A Medvedev, T Niendorf, A Molotnikov Materials & Design 212, 110220, 2021 | 9 | 2021 |
On the importance of nano-oxide control in laser powder bed fusion manufactured Ni-based alloys to enhance fracture properties M Peters, EG Brodie, S Thomas, L Djumas, M Brameld, M Salasi, Z Quadir, ... Materialia 32, 101958, 2023 | 7 | 2023 |
Additively Manufactured TiTa Alloys for Improved Osseointegration of Bone Implants EG Brodie Monash University, 2020 | | 2020 |