Jiaxing Sun | Materials Thermodynamics | Best Researcher Award

Best Researcher Award

Jiaxing Sun
Beijing University of Science and Technology, China

Jiaxing Sun
Affiliation Beijing University of Science and Technology
Country China
Scopus ID 57218226931
Documents 17
Citations 66
h-index 6
Subject Area Materials Thermodynamics
Event Metallurgical Engineering Awards

Jiaxing Sun is a researcher affiliated with Beijing University of Science and Technology, China, whose documented research profile includes work within the field of Materials Thermodynamics. The supplied Scopus record identifies 17 documents, 66 citations, and an h-index of 6. Scopus author profiles provide publication, citation, affiliation, subject-area, and author-identification information that can be used to contextualize scholarly research activity. [1]

Abstract

This academic recognition profile presents Jiaxing Sun in connection with the Best Researcher Award under the Metallurgical Engineering Awards program. Sun is affiliated with Beijing University of Science and Technology in China and is associated with the research area of Materials Thermodynamics. The supplied bibliometric information records 17 Scopus-indexed documents, 66 citations, and an h-index of 6. These indicators provide a quantitative view of documented scholarly output and citation activity, while the broader significance of materials thermodynamics lies in understanding phase stability, equilibrium, thermochemical properties, and the behavior of multicomponent materials. Thermodynamic databases and computational approaches such as CALPHAD are widely used to support materials development and process design. [2] [3]

Keywords

Jiaxing Sun; Materials Thermodynamics; Metallurgical Engineering; Computational Thermodynamics; CALPHAD; Phase Equilibria; Materials Science; Thermodynamic Databases; Beijing University of Science and Technology; Researcher Award.

Introduction

Materials thermodynamics provides a fundamental framework for describing the relationships among temperature, pressure, composition, phase stability, chemical potential, and material properties. In metallurgical engineering, thermodynamic principles are particularly important for interpreting phase formation, solidification, transformations, alloy design, and processing conditions. Computational thermodynamics extends these principles by enabling researchers to evaluate complex systems and construct predictive descriptions for multicomponent materials. [3]

Research Profile

The supplied researcher information places Jiaxing Sun within Materials Thermodynamics and identifies Beijing University of Science and Technology as the institutional affiliation. The associated Scopus Author ID is 57218226931. According to the supplied bibliometric record, the profile contains 17 documents, 66 citations, and an h-index of 6. Scopus explains that its Author Identifier is designed to distinguish researchers with similar names and to group documents associated with an author record. [1]

Research Contributions

Within Materials Thermodynamics, research contributions may encompass the assessment and interpretation of thermodynamic data, phase-equilibrium analysis, thermodynamic modeling, database development, and computational support for materials design. Established thermodynamic databases allow researchers to represent phase behavior and generate calculated information for systems where direct experimental characterization across every composition and temperature condition may be impractical. [2] [5]

Publications

The supplied Scopus record indicates 17 documents associated with Jiaxing Sun. Because a complete publication list and individual article metadata were not supplied with the award information, specific publication titles are not reproduced here. The documented publication count should therefore be interpreted as the bibliometric value supplied for this recognition profile rather than as an independently reconstructed publication bibliography.

Research Impact

The supplied bibliometric indicators provide measurable evidence of scholarly dissemination associated with the researcher profile. The reported 66 citations indicate that publications within the supplied record have received citations from subsequent scholarly work, while an h-index of 6 indicates that six documents in the relevant record have each received at least six citations under the stated bibliometric profile. Bibliometric indicators should be considered alongside publication quality, research originality, methodological rigor, collaboration, and field-specific context. [2]

Award Suitability

The Best Researcher Award profile is presented on the basis of the supplied academic affiliation, research specialization, publication record, citation count, and h-index. Jiaxing Sun’s stated specialization in Materials Thermodynamics is directly relevant to metallurgical engineering and materials science, where thermodynamic analysis provides a foundation for understanding phase stability and materials behavior. The reported research indicators provide additional quantitative context for evaluating scholarly activity.

Conclusion

Jiaxing Sun’s supplied academic profile reflects research activity in Materials Thermodynamics at Beijing University of Science and Technology, China. The documented Scopus indicators of 17 documents, 66 citations, and an h-index of 6 provide quantitative evidence of scholarly publication and citation activity. Materials thermodynamics remains an important component of modern metallurgical and materials engineering because thermodynamic models and databases support the interpretation of phase behavior and the computational design of complex materials. [3] [4]

References

  1. Scopus. (n.d.). Elsevier Jiaxing Sun Author Profile.
    https://www.scopus.com/authid/detail.uri?authorId=57218226931
  2. J Sun, D Ye, L Meng, Z Du. (2026). Diffusivities and atomic mobilities of fcc phase in Co-rich Co–Fe–Ti system: Experimental study and CALPHAD assessment.
    https://www.sciencedirect.com/science/article/abs/pii/S036459162600009X
  3. X Chen, J Sun, C Guo, Z Du. (2026). Experimental determination and thermodynamic modeling of the Al–Mo–Zr system.
    https://www.sciencedirect.com/science/article/pii/S092583882603464X
  4. J Sun, K Liang, Y Hou, Z Du. (2026). Thermodynamic and mechanical properties of Pd–Ti–V intermetallic compounds: first-principles calculations and experimental validation.
    https://www.sciencedirect.com/science/article/pii/S0925838826032883
  5. J Sun, C Guo, C Li, Z Du. (2023). Experimental investigation and thermodynamic optimization of the Co–Ta–Zr system.
    https://www.sciencedirect.com/science/article/pii/S0925838823013166

Maëlys Gauthé | Ceramic additive manufacturing | Best Researcher Award

Ms. Maëlys Gauthé | Ceramic additive manufacturing | Best Researcher Award

PhD student at Université Paris-Saclay, France

🌟 Gauthé Maëlys is a dedicated PhD student at Université Paris-Saclay specializing in ceramic additive manufacturing for aerospace applications. With an engineering degree in material sciences, Gauthé transitioned from working on metal alloys in the aeronautics industry to pursuing a passion for the spatial industry. Since 2022, they have focused on process development, material characterization, and precision polishing of silicon carbide for space mirrors. Collaborating with industry leaders like Safran Group, Gauthé’s innovative research is paving the way for advancements in high-strength materials and space technology. Their contributions include impactful publications and presentations at international conferences.

Professional Profiles📖

Orcid

Scopus

Education 🎓

🎓 Gauthé Maëlys earned an engineering degree in material sciences, which provided a foundation in advanced material systems and their applications. Their academic pursuits were driven by a passion for innovation in both aeronautics and the spatial industry. Transitioning to doctoral studies in 2022, Gauthé joined Université Paris-Saclay to explore the development of ceramic materials for aerospace applications. Their educational journey reflects a strong blend of theoretical knowledge and practical expertise, encompassing additive manufacturing, material characterization, and high-precision techniques tailored for industry challenges.

Work Experience💼

💼 Gauthé Maëlys has amassed significant experience in material sciences, starting with work on metal alloys such as monocrystalline nickel-based superalloys and titanium alloys for aeronautic components. Since 2022, they have been pursuing a PhD on ceramic additive manufacturing for the spatial industry, focusing on silicon carbide materials. Their collaborations with the Safran Group have involved process development, material characterization, and functional part fabrication. Additionally, Gauthé has contributed to knowledge-sharing through publications in prestigious journals and presentations at global conferences. This experience highlights their ability to combine academic research with real-world applications.

Research Focus

🏆 Gauthé Maëlys has demonstrated significant achievements in their academic and professional career, though specific awards and honors have not been detailed. Their recognition lies in impactful collaborations, high-quality publications in leading journals, and invitations to present at prestigious international conferences. The alignment of their research with industry challenges, especially in collaboration with the Safran Group, underscores the relevance and potential impact of their work in material sciences and aerospace engineering.

Conclusion✅

Gauthé Maëlys demonstrates substantial promise as a researcher with significant contributions to ceramic additive manufacturing for aerospace applications. Their innovative work, industry collaboration, and academic output position them as a strong candidate for the Best Researcher Award. However, addressing areas such as patents, broader contributions, and citation metrics would further bolster their candidacy. Overall, Gauthé is a commendable nominee whose work has the potential for lasting impact in materials science and aerospace industries.

📚Publications to Noted

 

Fused Filament Fabrication of Silicon Carbide Parts: A Strategy for Producing High-Strength Components

Authors: Maëlys Gauthé, Christophe Lorrette, Laurent Chaffron, Sarah Calmé, Xavier Tonnellier, Jacques Rodolfo, Yvan Sortais

Year: 2025

Journal: Journal of the European Ceramic Society

 

Creep and Tensile Behavior of a Nickel-Based Single Crystal Superalloy With a Bimodal γ′ Precipitation

Authors: Jérémy Rame, Dominique Eyidi, Anne Joulain, Maëlys Gauthé, Jonathan Cormier

Year: 2023

Journal: Metallurgical and Materials Transactions A