Overview
Background
Dr Ju Yao specialises in metal additive manufacturing, microstructural characterisation, and hydrogen embrittlement. She was awarded her PhD from The University of Queensland in 2025. Her research focuses on understanding how processing influences microstructure and properties to improve the reliability and sustainability of advanced metallic materials.
Her work centres on structure–property relationships in high-strength alloys, particularly additively manufactured steels and, more recently, copper and copper-based materials. She integrates advanced characterisation with modelling to reveal how microstructural features govern mechanical performance, corrosion behaviour, and hydrogen-related degradation.
Key areas of expertise include:
- Metal additive manufacturing (steels and Cu-based alloys)
- Hydrogen embrittlement and corrosion science
- Microstructural characterisation
- Electrochemical testing and mechanical property evaluation
Dr Yao has published in leading international journals and contributes to advancing knowledge in materials degradation and advanced manufacturing. She collaborates with academic and industry partners to develop innovative alloy design and processing strategies.
Her research aims to deliver high-performance, durable, and sustainable metallic materials for applications in energy, infrastructure, and advanced manufacturing systems.
Availability
- Dr Ju Yao is:
- Available for supervision
Fields of research
Qualifications
- Doctor of Philosophy of Materials Engineering, The University of Queensland
Works
Search Professor Ju Yao’s works on UQ eSpace
2026
Journal Article
Achieving architectured microstructures in plain carbon steel through programmed phase transformation using additive manufacturing
Tan, Qiyang, Zheng, Zhong, Chang, Haiwei, Ly, Anh, Li, Erlei, Yao, Ju, Sun, Zhiyan, Knibbe, Ruth and Zhang, Ming-Xing (2026). Achieving architectured microstructures in plain carbon steel through programmed phase transformation using additive manufacturing. Additive Manufacturing, 122 105175, 1-19. doi: 10.1016/j.addma.2026.105175
2025
Journal Article
Tailoring stress corrosion cracking resistance of pearlitic steel wires via composition and cold drawing ratio
Zhang, Zeling, Qiao, Wenwei, Xu, Yan, Wang, Linfeng, Yao, Ju, Zhou, Lichu, Zhou, Xuefeng, Dargusch, Matthew, Atrens, Andrej, Venezuela, Jeffrey, Xie, Zonghan and Fang, Feng (2025). Tailoring stress corrosion cracking resistance of pearlitic steel wires via composition and cold drawing ratio. Corrosion Science, 257 113368, 1-13. doi: 10.1016/j.corsci.2025.113368
2025
Journal Article
Tempering-induced modulation of hydrogen embrittlement in additively manufactured AISI 4340 steel
Yao, Ju, Tan, Qiyang, Venezuela, Jeffrey, Sun, Kaige, Ma, Ninshu, Atrens, Andrej and Zhang, Ming-Xing (2025). Tempering-induced modulation of hydrogen embrittlement in additively manufactured AISI 4340 steel. Materials Science and Engineering: A, 946 149125, 149125. doi: 10.1016/j.msea.2025.149125
2025
Other Outputs
Hydrogen embrittlement of additively manufactured advanced structural materials
Yao, Ju (2025). Hydrogen embrittlement of additively manufactured advanced structural materials. PhD Thesis, School of Mechanical and Mining Engineering, The University of Queensland. doi: 10.14264/75179cb
2025
Journal Article
Hydrogen embrittlement susceptibility of additively manufactured high-strength low-alloy AISI 4340 steel
Yao, Ju, Venezuela, Jeffrey, Tan, Qiyang, Wang, Hao, Shu, Yilei, Gray, Evan, Ma, Ninshu, Atrens, Andrej and Zhang, Ming-Xing (2025). Hydrogen embrittlement susceptibility of additively manufactured high-strength low-alloy AISI 4340 steel. Corrosion Science, 256 113212, 113212. doi: 10.1016/j.corsci.2025.113212
2024
Journal Article
Additive manufacturing of high-strength low-alloy AISI 4340 steel with an optimal strength-ductility-toughness trade-off
Yao, Ju, Tan, Qiyang, Venezuela, Jeffrey, Atrens, Andrej and Zhang, Ming-Xing (2024). Additive manufacturing of high-strength low-alloy AISI 4340 steel with an optimal strength-ductility-toughness trade-off. Additive Manufacturing, 94 104496, 104496. doi: 10.1016/j.addma.2024.104496
2023
Journal Article
Recent research progress in hydrogen embrittlement of additively manufactured metals – a review
Yao, Ju, Tan, Qiyang, Venezuela, Jeffrey, Atrens, Andrej and Zhang, Ming-Xing (2023). Recent research progress in hydrogen embrittlement of additively manufactured metals – a review. Current Opinion in Solid State and Materials Science, 27 (5) 101106, 1-43. doi: 10.1016/j.cossms.2023.101106
2023
Journal Article
Design the arbitrary order calculus operator by a simulated hyperbolic function for analytical applications
Yao, Zhixiang, Yao, Ju and Su, Hui (2023). Design the arbitrary order calculus operator by a simulated hyperbolic function for analytical applications. Chemometrics and Intelligent Laboratory Systems, 234 104754, 1-17. doi: 10.1016/j.chemolab.2023.104754
2021
Journal Article
Yield-adjusted operation for convolution filter denoising
Yao, Zhixiang, Su, Hui, Yao, Ju and Huang, Xiaocheng (2021). Yield-adjusted operation for convolution filter denoising. Analytical Chemistry, 93 (49) acs.analchem.1c03606, 16489-16503. doi: 10.1021/acs.analchem.1c03606
2021
Journal Article
Improve the performance of independent component analysis by mapping the spectrum to an orthogonal space
Yao, Zhixiang, Su, Hui and Yao, Ju (2021). Improve the performance of independent component analysis by mapping the spectrum to an orthogonal space. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 251 119467, 119467. doi: 10.1016/j.saa.2021.119467
2020
Journal Article
Blind source separation of coexisting background in Raman spectra
Yao, Ju, Su, Hui and Yao, Zhixiang (2020). Blind source separation of coexisting background in Raman spectra. Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, 238 118417, 118417. doi: 10.1016/j.saa.2020.118417
2020
Other Outputs
Laser deposition of titanium oxide on titanium alloy for wear-resistant application
Yao, Ju (2020). Laser deposition of titanium oxide on titanium alloy for wear-resistant application. Master's Thesis, School of Mechanical and Mining Engineering, The University of Queensland. doi: 10.14264/3f595a5
Supervision
Availability
- Dr Ju Yao is:
- Available for supervision
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Media
Enquiries
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