Sida Liu | High-Performance Alloys | Best Researcher Award
Prof. Sida Liu, Xi’an Jiaotong University, China.
Professor Sida Liu is a distinguished academic at Xi’an Jiaotong University, specializing in aerospace engineering and the development of high-performance alloys. His research focuses on lightweight materials for extreme conditions, utilizing grain refinement technology and data-driven methods. As a key member of several renowned research teams, Liu has developed the Al-TCB grain refiner series, improving aluminum alloy performance for global companies like CHALCO and Huawei. With over 50 SCI-indexed papers and multiple national patents, he has earned recognition as a Nationally Recognized Young Talent and an influential contributor to the materials science field.Β 





Publication profile
Orcid
Scopus
Education and Experience
- 2016-2020: Doctor of Engineering, RWTH Aachen University, GermanyΒ
- 2013-2016: Master of Engineering in Materials, Ocean University of ChinaΒ
- 2009-2013: Bachelor of Science in Physics, Shandong University, ChinaΒ
- 2023-Present: Professor, Xi’an Jiaotong University, ChinaΒ
- 2022-2023: Researcher, Shandong University, ChinaΒ
- 2020-2022: Postdoctoral Fellow, City University of Hong KongΒ
- 2020: Visiting Scholar, Forschungszentrum JΓΌlich GmbH, GermanyΒ
- 2019: Visiting Scholar, Chinese Academy of Sciences, NingboΒ
- 2016-2020: Graduate Research Assistant, RWTH Aachen University, GermanyΒ
- 2010-2016: Graduate Research Assistant, Shandong University, ChinaΒ
Suitability For The Award
Professor Sida Liu, a distinguished researcher in the field of aerospace and materials engineering, is an exceptional candidate for the Best Researcher Award. Currently serving as a professor and doctoral supervisor at Xi’an Jiaotong University, his groundbreaking contributions in developing high-performance lightweight alloys and advancing grain refinement technologies have had a profound impact on material science, particularly for extreme conditions in aerospace and other high-demand industries.
Professional DevelopmentΒ
Publications Top Notes
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A facile high-efficiency preparation strategy for Al-containing multi-component boride microcrystals with superior comprehensive performanceΒ (2025, Journal of Materials Science and Technology,Β
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Strain effect of phonon and electron in 1D crystals HfS3 and ZrS3Β 2024,Β
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Review of External Field Effects on Electrocatalysis: Machine Learning Guided DesignΒ (2024, Advanced Functional Materials, 1 citation)Β
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3D/4D additiveβsubtractive manufacturing of heterogeneous ceramicsΒ (2024, Journal of Materials Science and Technology, 3 citations)Β
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Elemental partitioning-mediated crystalline-to-amorphous phase transformation under quasi-static deformationΒ (2024, Nature Communications, 4 citations)Β
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Insights into the dual effects of Ti on the grain refinement and mechanical properties of hypoeutectic AlβSi alloysΒ (2024, Journal of Materials Science and Technology, 17 citations)Β
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Additively manufactured fine-grained ultrahigh-strength bulk aluminum alloys with nanostructured strengthening defectsΒ (2024, Materials Today, 8 citations)Β