Jonathan Aristya Setyadji

Jonathan Aristya SetyadjiJonathan Aristya SetyadjiJonathan Aristya Setyadji

Jonathan Aristya Setyadji

Jonathan Aristya SetyadjiJonathan Aristya SetyadjiJonathan Aristya Setyadji
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  • Atom Probe
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Curriculum Vitae

Education

BEng in Materials Science and Engineering, Nanyang Technological University

2020 - 2024

- CN Yang & ASEAN Merit UG Scholarship


Cambridge A-Levels, Raffles Institution

- Physics, Chemistry + Analytical Chemistry, Mathematics, Economics, General Paper

Research Projects

Research Engineer, Department of Mechanical Engineering, NUS

Advisor: Tan Xipeng, Aug 2024 - present

- Lead of NUS atom probe (Invizo 6000).

- Lead researcher on grant project for additive manufacturing of refractory alloys.


Research Intern, Additive Technology Innovation Team, SIMTech A*STAR

Advisor: Hu Zhiheng, Mar 2024 - Jul 2024

- Additive manufacturing of aluminum matrix nanocomposites.


Visiting Undergraduate Researcher, Laboratory of Mechanical Metallurgy, EPFL

Advisor: Andreas Mortensen, Jan 2023 - Jul 2023

- Micromechanics of oxide inclusions in arc melted deoxidized iron.


Undergraduate Researcher, Department of Mechanical and Aerospace Engineering

Advisor: Matteo Seita, Aug 2021 - Dec 2022

- Additive manufacturing of Inconel 725.

Technical Skills

Characterization:

Atom probe tomography (CAMECA Invizo 6000), FIB (FEI Versa 3D Dual Beam), SEM-EDS, nanoindentation (Bruker Hysitron TI 950), tensile and compression tests.


Fabrication:

L-PBF (AconityMini, 3DS ProX300), arc melting (MRF TA-200, Buehler MAM1).


Software:

OriginLab, ThermoCalc (databases TCOX9, TCHEA8), CAD (Fusion360).

Publications

[3] Setyadji, J. A., & Tan, X. “Additive Manufacturing of NbMoTaW Refractory High Entropy Alloy.” Poster presented at the Asia-Pacific International Conference on Additive Manufacturing (APICAM 2025), Melbourne.


[2] Slagter, A., Setyadji, J. A., Vogt, E. L., Hernández-Escobar, D., Deillon, L., & Mortensen, A. (2024). “Nanoindentation hardness and modulus of Al₂O₃–SiO₂–CaO and MnO–SiO₂–FeO inclusions in iron”. Metallurgical and Materials Transactions A, 55, 1469–1483. https://doi.org/10.1007/s11661-024-07330-x


[1] Todaro, C. J., Rashidi, M., Liu, R. L., Gao, S., Le, T. P., Fronda, J. E., Setyadji, J. A., Tang, Y. T. & Seita, M. (2022). “Laser powder bed fusion of high-strength and corrosion-resistant Inconel alloy 725”.Materials Characterization, 194, Article 112454. https://doi.org/10.1016/j.matchar.2022.112454

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