World's Best Scientists 2026 revealed!

D-Index & Metrics

Materials Science

D-Index
44
Citations
8290
World Ranking
11996
National Ranking
3290

Overview

Xiaoyan Song is affiliated with Beijing University of Technology in China and has an extensive body of research primarily focused on engineering and materials science. Their work is concentrated on mechanical engineering and materials chemistry, addressing various aspects of advanced materials and composites, metal mechanics, and ceramic materials synthesis.

The scientist's recent published papers cover multiple domains related to materials engineering and processing. Selected papers include:

  • Engineering materials with light: recent progress in digital light processing based 3D printing (2020), published in Journal of Materials Chemistry C
  • Nanocrystalline WC-Co composite with ultrahigh hardness and toughness (2020), published in Composites Part B Engineering
  • W-Cu composites with excellent comprehensive properties (2022), published in Composites Part B Engineering
  • Femtosecond visualization of oxygen vacancies in metal oxides (2020), published in Science Advances
  • Wear resistance enhancement of HVOF-sprayed WC-Co coating by complete densification of starting powder (2020), published in Materials & Design

Xiaoyan Song collaborates frequently with a core group of co-authors, including Hao Lü, Haibin Wang, Xuemei Liu, Zhi Zhao, and Chao Hou. These partnerships have contributed significantly to the scientist's output and research depth over time.

The scientist's publication outlets include journals with strong representation in the fields of refractory metals, alloys, composites, and material science technology. Their frequent publication venues are:

  • International Journal of Refractory Metals and Hard Materials
  • Journal of Alloys and Compounds
  • Composites Part B Engineering
  • Journal of Material Science and Technology
  • SSRN Electronic Journal

The main fields of study represented in Xiaoyan Song's research are Engineering, with a strong focus on Mechanical Engineering, and Materials Science. Subfields include Materials Chemistry, Mechanics of Materials, Electronic, Optical and Magnetic Materials, and Ceramics and Composites.

Main topics addressed in their work are:

  • Advanced materials and composites
  • Metal and Thin Film Mechanics
  • Advanced ceramic materials synthesis
  • Aluminum Alloys Composites Properties
  • Luminescence Properties of Advanced Materials
  • Orthopaedic implants and arthroplasty
  • High-Temperature Coating Behaviors

Best Publications

  • Neck Formation and Self-Adjusting Mechanism of Neck Growth of Conducting Powders in Spark Plasma Sintering

    Xiaoyan Song;Xuemei Liu;Jiuxing Zhang

  • Studies on the removal of tetracycline by multi-walled carbon nanotubes

    Lei Zhang;Xiaoyan Song;Xueyan Liu;Lijun Yang

  • Adjustable Zero Thermal Expansion in Antiperovskite Manganese Nitride

    Xiaoyan Song;Zhonghua Sun;Qingzhen Huang;Markus Rettenmayr

  • Fabrication of superhydrophobic surfaces by self-assembly and their water-adhesion properties.

    Xiaoyan Song;Jin Zhai;Yilin Wang;Lei Jiang

  • Complexions in WC-Co cemented carbides

    Xingwei Liu;Xiaoyan Song;Haibin Wang;Xuemei Liu

  • Effect of interfacial characteristics on toughness of nanocrystalline cemented carbides

    Xiaoyan Song;Yang Gao;Xuemei Liu;Chongbin Wei

  • W-Cu composites with submicron- and nanostructures: progress and challenges

    Chao Hou;Xiaoyan Song;Fawei Tang;Yurong Li

  • Effects of scale combination and contact condition of raw powders on SPS sintered near-nanocrystalline WC–Co alloy

    Shixian Zhao;Xiaoyan Song;Jiuxing Zhang;Xuemei Liu

  • Correlation of thermodynamics and grain growth kinetics in nanocrystalline metals

    Xiaoyan Song;Jiuxing Zhang;Lingmei Li;Keyong Yang

  • Fabrication of highly antireflective silicon surfaces with superhydrophobicity.

    Meiwen Cao;Xiaoyan Song;Jin Zhai;Jinben Wang

  • Self-assembly of amino-functionalized monolayers on silicon surfaces and preparation of superhydrophobic surfaces based on alkanoic acid dual layers and surface roughening.

    Xiaoyan Song;Jin Zhai;Yilin Wang;Lei Jiang

  • Control over the wettability of amorphous carbon films in a large range from hydrophilicity to super-hydrophobicity

    Y. Zhou;B. Wang;X. Song;E. Li

  • Effect of ball milling time on the hydrogen storage properties of TiF3-doped LiAlH4

    Shu-Sheng Liu;Shu-Sheng Liu;Li-Xian Sun;Yao Zhang;Fen Xu

  • Technique for Preparing Ultrafine Nanocrystalline Bulk Material of Pure Rare‐Earth Metals

    Xiaoyan Song;Jiuxing Zhang;Ming Yue;Erdong Li

  • Determination of grain size by XRD profile analysis and TEM counting in nano-structured Cu

    Yong Zhong;Dehai Ping;Xiaoyan Song;Fuxing Yin

  • Effects of WC particle size on densification and properties of spark plasma sintered WC–Co cermet

    Shixian Zhao;Xiaoyan Song;Chongbin Wei;Li Zhang

  • Mechanisms of WC plastic deformation in cemented carbide

    Xuemei Liu;Jianlong Zhang;Chao Hou;Haibin Wang

  • Nanocrystalline WC-Co composite with ultrahigh hardness and toughness

    Yong Peng;Haibin Wang;Chong Zhao;Huaxin Hu

  • Investigation on the degradation of brilliant green induced oxidation by NiFe2O4 under microwave irradiation

    Lei Zhang;Xueyan Liu;Xingjia Guo;Mingming Su

  • Grain size effect on wear resistance of WC-Co cemented carbides under different tribological conditions

    Haibin Wang;Haibin Wang;Mark Gee;Qingfan Qiu;Hannah Zhang

  • W–Cu composites with excellent comprehensive properties

    Unknown

  • Microstructure and properties of ultrafine cemented carbides—Differences in spark plasma sintering and sinter-HIP

    C.B. Wei;X.Y. Song;J. Fu;X.M. Liu

  • Binder-free WC bulk synthesized by spark plasma sintering

    Jiuxing Zhang;Guozhen Zhang;Shixian Zhao;Xiaoyan Song

  • In-situ synthesis of WC–Co composite powder and densification by sinter-HIP

    Chongbin Wei;Xiaoyan Song;Shixian Zhao;Li Zhang

  • Preparation of ultrafine WC–Co composite powder by in situ reduction and carbonization reactions

    Wenbin Liu;Xiaoyan Song;Jiuxing Zhang;Guozhen Zhang

  • Sliding wear behavior of nanostructured WC–Co–Cr coatings

    Haibin Wang;Xuezheng Wang;Xiaoyan Song;Xuemei Liu

Frequent Co-Authors

Zuoren Nie
Zuoren Nie Beijing University of Technology
Fuxing Yin
Fuxing Yin Guangdong University of Technology
Lixian Sun
Lixian Sun Guilin University of Electronic Technology
Mark Gee
Mark Gee National Physical Laboratory
Rainer Schmid-Fetzer
Rainer Schmid-Fetzer Clausthal University of Technology
Z.B. Jiao
Z.B. Jiao Hong Kong Polytechnic University
J.H. Luan
J.H. Luan City University of Hong Kong
Gregory S. Rohrer
Gregory S. Rohrer Carnegie Mellon University
Gerhard Wilde
Gerhard Wilde University of Münster
Richard H. Friend
Richard H. Friend University of Cambridge

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