World's Best Scientists 2026 revealed!

Overview

Xidong Hui is affiliated with the University of Science and Technology Beijing in China. Their research primarily focuses on engineering and materials science, with extensive work in mechanical engineering and aerospace engineering. Their contributions span key subfields such as materials chemistry, electronic, optical and magnetic materials, and mechanics of materials.

Their research covers a range of advanced materials topics, including high entropy alloys, high-temperature coating behaviors, metallic glasses and amorphous alloys, as well as high temperature alloys and creep phenomena. Additionally, they have studied intermetallics and advanced alloy properties, advanced materials and composites, and additive manufacturing materials and processes.

Selected recent publications by Xidong Hui include:

  • Integrating data mining and machine learning to discover high-strength ductile titanium alloys (2020), published in Acta Materialia
  • High temperature strengthening via nanoscale precipitation in wrought CoCrNi-based medium-entropy alloys (2020), published in Materials Science and Engineering A
  • Influences of Ti additions on the microstructure and tensile properties of AlCoCrFeNi2.1 eutectic high entropy alloy (2020), published in Intermetallics
  • Enhanced creep resistance induced by minor Ti additions to a second generation nickel-based single crystal superalloy (2022), published in Acta Materialia
  • Enhanced dynamic deformability and strengthening effect via twinning and microbanding in high density NiCoFeCrMoW high-entropy alloys (2022), published in Journal of Material Science and Technology

The frequent coauthors collaborating with Hui include:

  • Yidong Wu
  • Xuli Liu
  • Yuluo Li
  • Ningning Shen
  • Chengbo Xiao

Hui's research has appeared frequently in the following publication venues:

  • SSRN Electronic Journal
  • Intermetallics
  • Journal of Alloys and Compounds
  • Materials Science and Engineering A
  • Materials Letters

Their work emphasizes experimental and computational methods applied to novel alloy development, strengthening mechanisms, and microstructural influences on material properties. The integration of data-driven techniques such as data mining and machine learning demonstrates a multidisciplinary approach within materials science and engineering contexts.

Best Publications

  • Enhanced strength and ductility in a high-entropy alloy via ordered oxygen complexes

    Zhifeng Lei;Xiongjun Liu;Yuan Wu;Hui Wang

  • A refractory Hf25Nb25Ti25Zr25 high-entropy alloy with excellent structural stability and tensile properties

    Y.D. Wu;Y.H. Cai;T. Wang;J.J. Si

  • Formation of Cu-Zr-Al bulk metallic glass composites with improved tensile properties

    Y. Wu;H. Wang;H.H. Wu;Z.Y. Zhang

  • Phase composition and solid solution strengthening effect in TiZrNbMoV high-entropy alloys

    Y.D. Wu;Y.H. Cai;X.H. Chen;T. Wang

  • Metallic liquids and glasses: atomic order and global packing.

    X. J. Liu;X. J. Liu;Y. Xu;X. Hui;Z. P. Lu

  • Formation, microstructure and properties of long-period order structure reinforced Mg-based bulk metallic glass composites

    X. Hui;W. Dong;G.L. Chen;K.F. Yao

  • Eutectic Al–Si–Cu–Fe–Mn alloys with enhanced mechanical properties at room and elevated temperature

    E.R. Wang;X.D. Hui;G.L. Chen

  • Integrating data mining and machine learning to discover high-strength ductile titanium alloys

    Chengxiong Zou;Jinshan Li;William Yi Wang;Ying Zhang

  • Improved mechanical properties in cast Al–Si alloys by combined alloying of Fe and Cu

    E.R. Wang;X.D. Hui;S.S. Wang;Y.F. Zhao

  • Atomic structure of Zr41.2Ti13.8Cu12.5Ni10Be22.5 bulk metallic glass alloy

    X. Hui;H.Z. Fang;G.L. Chen;S.L. Shang

  • Enhanced mechanical properties induced by refined heat treatment for 9Cr–0.5Mo–1.8W martensitic heat resistant steel

    S.S. Wang;D.L. Peng;L. Chang;X.D. Hui

  • Effects of Alloying Elements on Stacking Fault Energies and Electronic Structures of Binary Mg Alloys: A First-Principles Study

    William Yi Wang;Shun Li Shang;Yi Wang;Zhi Gang Mei

  • Lattice dynamics, thermodynamics, and bonding strength of lithium-ion battery materials LiMPO4 (M = Mn, Fe, Co, and Ni): a comparative first-principles study

    S. L. Shang;Y. Wang;Z. G. Mei;X. D. Hui

  • Atomic and electronic basis for the serrations of refractory high-entropy alloys

    William Yi Wang;William Yi Wang;Shun Li Shang;Yi Wang;Fengbo Han

  • Atomistic mechanism for nanocrystallization of metallic glasses

    X.J. Liu;G.L. Chen;H.Y. Hou;X. Hui

  • Microstructure and ductile–brittle transition of as-cast Zr-based bulk glass alloys under compressive testing

    Z Bian;G.L Chen;G He;X.D Hui

  • Al-centered icosahedral ordering in Cu46Zr46Al8 bulk metallic glass

    H. Z. Fang;X. Hui;G. L. Chen;Z. K. Liu

  • Phase stability and mechanical properties of AlHfNbTiZr high-entropy alloys

    Yidong Wu;Jiajia Si;Deye Lin;Tan Wang

  • Ordered clusters and free volume in a Zr–Ni metallic glass

    X. J. Liu;G. L. Chen;X. Hui;T. Liu

  • Primary crystallization in rapidly solidified Zr70Cu20Ni10 alloy from a supercooled liquid region

    Huan-Rong Wang;Yu-Lai Gao;Guang-Hui Min;Xi-Dong Hui

Frequent Co-Authors

Zi-Kui Liu
Zi-Kui Liu Pennsylvania State University
G.L. Chen
G.L. Chen University of Science and Technology Beijing
Shun-Li Shang
Shun-Li Shang Pennsylvania State University
Yi Wang
Yi Wang Pennsylvania State University
Zhaoping Lu
Zhaoping Lu University of Science and Technology Beijing
Laszlo J. Kecskes
Laszlo J. Kecskes Johns Hopkins University
Yandong Wang
Yandong Wang University of Science and Technology Beijing
Xiongjun Liu
Xiongjun Liu University of Science and Technology Beijing
Jinshan Li
Jinshan Li Northwestern Polytechnical University
Yuan Wu
Yuan Wu University of Science and Technology Beijing

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