World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
38
Citations
4353
World Ranking
8198
National Ranking
1449

Overview

Bing Xu is affiliated with Zhejiang University in China and has a research focus primarily within the field of engineering. Their work encompasses a broad range of topics related to mechanical and control engineering disciplines.

The main areas of study include:

  • Engineering

The scientist's research covers multiple subfields such as:

  • Mechanical Engineering
  • Control and Systems Engineering
  • Automotive Engineering
  • Biomedical Engineering
  • Mechanics of Materials

Specific research topics addressed in their publications feature:

  • Hydraulic and Pneumatic Systems
  • Electric and Hybrid Vehicle Technologies
  • Tribology and Lubrication Engineering
  • Control Systems in Engineering
  • Robot Manipulation and Learning
  • Fault Detection and Control Systems
  • Soft Robotics and Applications

Bing Xu has contributed to several peer-reviewed journals and publication venues, including:

  • IEEE/ASME Transactions on Mechatronics
  • SSRN Electronic Journal
  • IEEE Transactions on Vehicular Technology
  • IEEE Transactions on Instrumentation and Measurement
  • Chinese Journal of Mechanical Engineering

Among recent publications with significant citation counts is the 2020 paper titled Research and Development of Electro-hydraulic Control Valves Oriented to Industry 4.0: A Review, published in the Chinese Journal of Mechanical Engineering.

Other notable papers from the 2020-2022 period linked to their research environment include:

  • A theoretical dynamic model to study the vibration response characteristics of an axial piston pump (2020), Mechanical Systems and Signal Processing
  • Research on wear prediction of piston/cylinder pair in axial piston pumps (2020), Wear
  • Integrated slipper retainer mechanism to eliminate slipper wear in high-speed axial piston pumps (2022), Frontiers of Mechanical Engineering
  • Simulation and experimental investigation on low wear rate surface contour of piston/cylinder pair in an axial piston pump (2021), Tribology International

Frequent collaborators in Bing Xu's research include Junhui Zhang, Min Cheng, Ruqi Ding, Feng Wang, and Fei Lyu. These coauthors have collaborated extensively across various published works.

Best Publications

  • 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

  • New Investigation in Energy Regeneration of Hydraulic Elevators

    Huayong Yang;Wei Sun;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

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

    Unknown

  • 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

  • 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

  • Energy efficiency improvement of heavy-load mobile hydraulic manipulator with electronically tunable operating modes

    Ruqi Ding;Junhui Zhang;Bing Xu;Min Cheng

  • Flow ripple reduction of an axial piston pump by a combination of cross-angle and pressure relief grooves: Analysis and optimization

    Bing Xu;Shaogan Ye;Junhui Zhang;Chunfeng Zhang

  • Motion control of multi-actuator hydraulic systems for mobile machineries: Recent advancements and future trends

    Bing Xu;Min Cheng

  • 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

  • Programmable hydraulic control technique in construction machinery: Status, challenges and countermeasures

    Ruqi Ding;Junhui Zhang;Bing Xu;Min Cheng

  • A Hybrid Displacement/Pressure Control Scheme for an Electrohydraulic Flow Matching System

    Bing Xu;Min Cheng;Huayong Yang;Junhui Zhang

  • Experimental investigations of the slipper spin in an axial piston pump

    Junhui Zhang;Qun Chao;Qiannan Wang;Bing Xu

  • Self-tuning pressure-feedback control by pole placement for vibration reduction of excavator with independent metering fluid power system

    Ruqi Ding;Ruqi Ding;Bing Xu;Junhui Zhang;Min Cheng;Min Cheng

  • Investigation on the radial micro-motion about piston of axial piston pump

    Bing Xu;Junhui Zhang;Huayong Yang;Bin Zhang

  • Optimization of cross angle based on the pumping dynamics model

    Ji-en Ma;You-tong Fang;Bing Xu;Hua-yong Yang

  • Bumpless mode switch of independent metering fluid power system for mobile machinery

    Ruqi Ding;Ruqi Ding;Bing Xu;Junhui Zhang;Min Cheng;Min Cheng

  • Effects of inclined cylinder ports on gaseous cavitation of high-speed electro-hydrostatic actuator pumps: a numerical study

    Qun Chao;Junhui Zhang;Bing Xu;Hsinpu Huang

Frequent Co-Authors

Junhui Zhang
Junhui Zhang Zhejiang University
Jin-yuan Qian
Jin-yuan Qian Zhejiang University
Kok-Meng Lee
Kok-Meng Lee Georgia Institute of Technology

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