World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
44
Citations
4568
World Ranking
1669
National Ranking
206

Overview

Min Wan is affiliated with Beihang University in China and has a research focus primarily in the field of Engineering, with significant contributions to Mechanical Engineering, Mechanics of Materials, Materials Chemistry, Biomedical Engineering, and Electrical and Electronic Engineering.

The scientist's work covers a range of topics, including:

  • Advanced machining processes and optimization
  • Advanced Surface Polishing Techniques
  • Metallurgy and Material Forming
  • Microstructure and mechanical properties
  • Metal Forming Simulation Techniques
  • Advanced Machining and Optimization Techniques
  • Advanced materials and composites

Min Wan's recent papers illustrate the scope and multidisciplinary nature of their research. Notable publications include:

  • "Simultaneously enhanced strength and ductility in a metastable β-Ti alloy by stress-induced hierarchical twin structure," 2020, Scripta Materialia
  • "Chatter detection methods in the machining processes: A review," 2022, Journal of Manufacturing Processes
  • "Micromanufacturing technologies of compact heat exchangers for hypersonic precooled airbreathing propulsion: A review," 2020, Chinese Journal of Aeronautics
  • "Multiscale modeling of coupling mechanisms in electrically assisted deformation of ultrathin sheets: An example on a nickel-based superalloy," 2021, International Journal of Machine Tools and Manufacture
  • "Effect of equal-channel angular pressing on microstructural evolution, mechanical property and biodegradability of an ultrafine-grained zinc alloy," 2021, Materials Science and Engineering A

The scientist frequently publishes in the following venues:

  • Journal of Manufacturing Processes
  • Mechanical Systems and Signal Processing
  • SSRN Electronic Journal
  • IEEE Transactions on Automatic Control
  • Materials Science and Engineering A

Min Wan collaborates regularly with several scholars, including Bao Meng, Weihong Zhang, Yun Yang, Dan-Yang Wen, and Rui Zhao.

Best Publications

  • A unified stability prediction method for milling process with multiple delays

    Min Wan;Wei-Hong Zhang;Jian-Wei Dang;Yun Yang

  • Efficient calibration of instantaneous cutting force coefficients and runout parameters for general end mills

    M. Wan;W.H. Zhang;G.H. Qin;G. Tan

  • Chatter prediction for the peripheral milling of thin-walled workpieces with curved surfaces

    Yun Yang;Wei-Hong Zhang;Ying-Chao Ma;Min Wan

  • Strategies for error prediction and error control in peripheral milling of thin-walled workpiece

    M. Wan;W.H. Zhang;G.H. Qin;Z.P. Wang

  • New procedures for calibration of instantaneous cutting force coefficients and cutter runout parameters in peripheral milling

    Min Wan;Wei-Hong Zhang;Jian-Wei Dang;Yun Yang

  • Numerical Prediction of Static Form Errors in Peripheral Milling of Thin-Walled Workpieces With Irregular Meshes

    Min Wan;Weihong Zhang;Kepeng Qiu;Tong Gao

  • On material separation and cutting force prediction in micro milling through involving the effect of dead metal zone

    Min Wan;Dan-Yang Wen;Ying-Chao Ma;Wei-Hong Zhang

  • Study on the construction mechanism of stability lobes in milling process with multiple modes

    Min Wan;Ying-Chao Ma;Wei-Hong Zhang;Yun Yang

  • A mathematical approach to analysis and optimal design of a fixture locating scheme

    G.H. Qin;W.H. Zhang;M. Wan

  • Optimization and improvement of stable processing condition by attaching additional masses for milling of thin-walled workpiece

    Min Wan;Xue-Bin Dang;Wei-Hong Zhang;Yun Yang

  • Cutting force modelling in machining of fiber-reinforced polymer matrix composites (PMCs): A review

    Min Wan;Shao-En Li;Heng Yuan;Wei-Hong Zhang

  • Study of static and dynamic ploughing mechanisms by establishing generalized model with static milling forces

    Min Wan;Ying-Chao Ma;Jia Feng;Wei-Hong Zhang

  • Identification of milling process damping using operational modal analysis

    Min Wan;Jia Feng;Ying-Chao Ma;Wei-Hong Zhang

  • Cutting force modeling for flat end milling including bottom edge cutting effect

    Jian-Wei Dang;Wei-Hong Zhang;Yun Yang;Min Wan

  • Mechanics and dynamics of thread milling process

    Min Wan;Yusuf Altintas

  • A novel cutting force modelling method for cylindrical end mill

    Min Wan;Wei-Hong Zhang;Jian-Wei Dang;Yun Yang

  • A unified instantaneous cutting force model for flat end mills with variable geometries

    Min Wan;Wen-Jie Pan;Wei-Hong Zhang;Ying-Chao Ma

  • Mechanism of process damping in milling of thin-walled workpiece

    Jia Feng;Min Wan;Ting-Qi Gao;Wei-Hong Zhang

  • An efficient decomposition-condensation method for chatter prediction in milling large-scale thin-walled structures

    Yun Yang;Wei-Hong Zhang;Ying-Chao Ma;Min Wan

  • Modeling of machining-induced residual stresses

    Min Wan;Xiang-Yu Ye;Dan-Yang Wen;W. H. Zhang

  • Calculations of chip thickness and cutting forces in flexible end milling

    M. Wan;W.H. Zhang

  • A new ternary-mechanism model for the prediction of cutting forces in flat end milling

    Min Wan;Ming-Sheng Lu;Wei-Hong Zhang;Yun Yang

  • Systematic study on cutting force modelling methods for peripheral milling

    Min Wan;Wei-Hong Zhang

Frequent Co-Authors

Weihong Zhang
Weihong Zhang Northwestern Polytechnical University
Yang Liu
Yang Liu Linköping University
Yusuf Altintas
Yusuf Altintas University of British Columbia

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