World's Best Scientists 2026 revealed!
Junhui Zhang

Junhui Zhang

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
38
Citations
4762
World Ranking
2309
National Ranking
279

Overview

Junhui Zhang is affiliated with Zhejiang University in China and has a research focus within the broad field of Engineering, especially in Mechanical Engineering, Control and Systems Engineering, and Biomedical Engineering. Their scholarly output includes 393 publications in engineering disciplines, with significant contributions to subfields such as Mechanical Engineering (166 publications), Control and Systems Engineering (71), Biomedical Engineering (55), Mechanics of Materials (28), and Ocean Engineering (15).

Thematically, their research covers several specialized topics, including Hydraulic and Pneumatic Systems, Tribology and Lubrication Engineering, Robotic Locomotion and Control, Soft Robotics and Applications, Oil and Gas Production Techniques, Control Systems in Engineering, and Fault Detection and Control Systems. The numeric weight of publications within these topics reflects the focus areas: for instance, 136 publications relate to Hydraulic and Pneumatic Systems and 40 to Tribology and Lubrication Engineering.

Junhui Zhang has authored papers featured in multiple venues of record. The frequent publication venues include:

  • SSRN Electronic Journal
  • Tribology International
  • IEEE Transactions on Instrumentation and Measurement
  • arXiv (Cornell University)
  • Chinese Journal of Mechanical Engineering

Highly cited recent papers demonstrate the scope and interdisciplinary nature of their work. Examples include:

  • "Soft Actuators and Robotic Devices for Rehabilitation and Assistance" (2021), published in Advanced Intelligent Systems
  • "Research and Development of Electro-hydraulic Control Valves Oriented to Industry 4.0: A Review" (2020), published in Chinese Journal of Mechanical Engineering
  • "A theoretical dynamic model to study the vibration response characteristics of an axial piston pump" (2020), published in Mechanical Systems and Signal Processing
  • "Research on wear prediction of piston/cylinder pair in axial piston pumps" (2020), published in Wear
  • "Integrated slipper retainer mechanism to eliminate slipper wear in high-speed axial piston pumps" (2022), published in Frontiers of Mechanical Engineering

Frequent collaborators include:

  • Bing Xu
  • Huaizhi Zong
  • Fei Lyu
  • Min Cheng
  • Weidi Huang

The collaborative network and range of publication venues reflect engagement with both theoretical modeling and applied research, particularly in areas linking control systems, mechanical dynamics, and robotics.

Best Publications

  • Soft Actuators and Robotic Devices for Rehabilitation and Assistance

    Min Pan;Chenggang Yuan;Xianrong Liang;Xianrong Liang;Tianyun Dong

  • RBFNN-Based Adaptive Sliding Mode Control Design for Delayed Nonlinear Multilateral Telerobotic System With Cooperative Manipulation

    Zheng Chen;Fanghao Huang;Wenjie Chen;Junhui Zhang

  • Research and Development of Electro-hydraulic Control Valves Oriented to Industry 4.0: A Review

    Bing Xu;Jun Shen;Shihao Liu;Qi Su

  • Theoretical investigation of the contributions of the excitation forces to the vibration of an axial piston pump

    Shaogan Ye;Shaogan Ye;Junhui Zhang;Bing Xu;Shiqiang Zhu

  • A Review of High-Speed Electro-Hydrostatic Actuator Pumps in Aerospace Applications: Challenges and Solutions

    Qun Chao;Junhui Zhang;Bing Xu;Hsinpu Huang

  • Pump/valves coordinate control of the independent metering system for mobile machinery

    Bing Xu;Ruqi Ding;Junhui Zhang;Min Cheng

  • A theoretical dynamic model to study the vibration response characteristics of an axial piston pump

    Shaogan Ye;Shaogan Ye;Junhui Zhang;Bing Xu;Liang Hou

  • Modeling and dynamic characteristics analysis on a three-stage fast-response and large-flow directional valve

    Bing Xu;Ruqi Ding;Junhui Zhang;Qi Su

  • Analysis of the cylinder block tilting inertia moment and its effect on the performance of high-speed electro-hydrostatic actuator pumps of aircraft

    Junhui Zhang;Qun Chao;Bing Xu

  • Research on wear prediction of piston/cylinder pair in axial piston pumps

    Fei Lyu;Junhui Zhang;Guangming Sun;Bing Xu

  • Noise Reduction of an Axial Piston Pump by Valve Plate Optimization

    Shao-Gan Ye;Jun-Hui Zhang;Bing Xu

  • Experimental investigation on the noise reduction of an axial piston pump using free-layer damping material treatment

    Junhui Zhang;Shiqi Xia;Shaogan Ye;Bing Xu

  • WristCam: A Wearable Sensor for Hand Trajectory Gesture Recognition and Intelligent Human–Robot Interaction

    Feiyu Chen;Honghao Lv;Zhibo Pang;Junhui Zhang

  • Integrated slipper retainer mechanism to eliminate slipper wear in high-speed axial piston pumps

    Unknown

  • Development of Flexible Robot Skin for Safe and Natural Human–Robot Collaboration

    Gaoyang Pang;Jia Deng;Fangjinhua Wang;Junhui Zhang

  • Thermal-fluid-structure coupling analysis for valve plate friction pair of axial piston pump in electrohydrostatic actuator (EHA) of aircraft

    Yunhua Li;Zhanling Ji;Liman Yang;Peng Zhang

  • Stiffness and energy absorption of additive manufactured hybrid lattice structures

    Junhui Zhang;Hsinpu Huang;Gan Liu;Huaizhi Zong

  • Investigation on structural optimization of anti-overturning slipper of axial piston pump

    Bing Xu;JunHui Zhang;HuaYong Yang

  • Discussion on the Reynolds equation for the slipper bearing modeling in axial piston pumps

    Qun Chao;Junhui Zhang;Bing Xu;Qiannan Wang

  • Multi-objective optimization of micron-scale surface textures for the cylinder/valve plate interface in axial piston pumps

    Yuan Chen;Junhui Zhang;Bing Xu;Qun Chao

  • Effect of surface texture on wear reduction of the tilting cylinder and the valve plate for a high-speed electro-hydrostatic actuator pump

    Junhui Zhang;Yuan Chen;Bing Xu;Qun Chao

Frequent Co-Authors

Bing Xu
Bing Xu Zhejiang University
Jin-yuan Qian
Jin-yuan Qian Zhejiang University
Christopher R. Bowen
Christopher R. Bowen University of Bath
Zhibo Pang
Zhibo Pang Royal Institute of Technology
Zhi-jiang Jin
Zhi-jiang Jin Zhejiang University
Bengt Sundén
Bengt Sundén Lund University
Weichao Sun
Weichao Sun Harbin Institute of Technology
Michael M. Khonsari
Michael M. Khonsari Louisiana State University

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