World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
36
Citations
3548
World Ranking
2593
National Ranking
320

Overview

Fujun Wang is affiliated with Tianjin University in China, focusing their research primarily in the field of Engineering. Their work spans a variety of subfields, including Biomedical Engineering, Control and Systems Engineering, Mechanical Engineering, Atomic and Molecular Physics and Optics, and Mechanics of Materials.

The main topics of Fujun Wang's research encompass Piezoelectric Actuators and Control, Advanced Sensor and Energy Harvesting Materials, Force Microscopy Techniques and Applications, Advanced Surface Polishing Techniques, Soft Robotics and Applications, Iterative Learning Control Systems, and Robotic Mechanisms and Dynamics.

Frequent publication venues for Wang include:

  • SSRN Electronic Journal
  • IEEE/ASME Transactions on Mechatronics
  • 2022 IEEE International Conference on Manipulation, Manufacturing and Measurement on the Nanoscale (3M-NANO)
  • Sensors and Actuators A Physical
  • Mechanism and Machine Theory

Coauthors often collaborating with Fujun Wang include:

  • Beichao Shi
  • Yanling Tian
  • Zhichen Huo
  • Xiubing Jing
  • Cunman Liang

Selected recent publications by Wang demonstrate a focus on precision positioning and soft robotics. These include:

  • "A Two-Finger Soft-Robotic Gripper with Enveloping and Pinching Grasping Modes" (2020), published in IEEE/ASME Transactions on Mechatronics
  • "A Spatial Deployable Three-DOF Compliant Nano-Positioner With a Three-Stage Motion Amplification Mechanism" (2020), published in IEEE/ASME Transactions on Mechatronics
  • "Modeling and Analysis of Soft Pneumatic Network Bending Actuators" (2020), published in IEEE/ASME Transactions on Mechatronics
  • "A Dual-Driven High Precision Rotary Platform Based on Stick-Slip Principle" (2021), published in IEEE/ASME Transactions on Mechatronics
  • "A 2-DOF nano-positioning scanner with novel compound decoupling-guiding mechanism" (2020), published in Mechanism and Machine Theory

Best Publications

  • Design of a Piezoelectric-Actuated Microgripper With a Three-Stage Flexure-Based Amplification

    Fujun Wang;Cunman Liang;Yanling Tian;Xingyu Zhao

  • Design and Control of a Compliant Microgripper With a Large Amplification Ratio for High-Speed Micro Manipulation

    Fujun Wang;Cunman Liang;Yanling Tian;Xingyu Zhao

  • Modification of wetting property of Inconel 718 surface by nanosecond laser texturing

    Zheng Yang;Zheng Yang;Yanling Tian;Yanling Tian;C.J. Yang;Fujun Wang

  • Design and control of a novel asymmetrical piezoelectric actuated microgripper for micromanipulation

    Cunman Liang;Fujun Wang;Beichao Shi;Zhichen Huo

  • A Novel Actuator-Internal Micro/Nano Positioning Stage With an Arch-Shape Bridge-Type Amplifier

    Fujun Wang;Zhichen Huo;Cunman Liang;Beichao Shi

  • Online study of cracks during laser cladding process based on acoustic emission technique and finite element analysis

    Fujun Wang;Huaidong Mao;Dawei Zhang;Xingyu Zhao

  • Development of a piezo-driven 3-DOF stage with T-shape flexible hinge mechanism

    Kunhai Cai;Yanling Tian;Fujun Wang;Dawei Zhang

  • Design and control methodology of a 3-DOF flexure-based mechanism for micro/nano-positioning

    Z. Guo;Y. Tian;C. Liu;F. Wang

  • A Two-Finger Soft-Robotic Gripper With Enveloping and Pinching Grasping Modes

    Shoufeng Liu;Fujun Wang;Zhu Liu;Wei Zhang

  • A novel voice coil motor-driven compliant micropositioning stage based on flexure mechanism

    Jiangkun Shang;Yanling Tian;Zheng Li;Fujun Wang

  • Design and control of a 6-degree-of-freedom precision positioning system

    Kunhai Cai;Yanling Tian;Fujun Wang;Dawei Zhang

  • A Dual-Driven High Precision Rotary Platform Based on Stick-Slip Principle

    Unknown

  • Modeling and controller design of a 6-DOF precision positioning system

    Kunhai Cai;Kunhai Cai;Yanling Tian;Yanling Tian;Xianping Liu;Sergej Fatikow

  • Design of a Novel Dual-Axis Micromanipulator With an Asymmetric Compliant Structure

    Fujun Wang;Beichao Shi;Yanling Tian;Zhichen Huo

  • A 2-DOF Monolithic Compliant Rotation Platform Driven by Piezoelectric Actuators

    Cunman Liang;Fujun Wang;Zhichen Huo;Beichao Shi

  • A Spatial Deployable Three-DOF Compliant Nano-Positioner With a Three-Stage Motion Amplification Mechanism

    Yanling Tian;Kangkang Lu;Fujun Wang;Chongkai Zhou

  • A new automatic resonance frequency tracking method for piezoelectric ultrasonic transducers used in thermosonic wire bonding

    Hongjie Zhang;Fujun Wang;Dawei Zhang;Lijing wang

  • An Improved Adaptive Genetic Algorithm for Image Segmentation and Vision Alignment Used in Microelectronic Bonding

    Fujun Wang;Junlan Li;Shiwei Liu;Xingyu Zhao

  • Modeling and Analysis of Soft Pneumatic Network Bending Actuators

    Zhu Liu;Fujun Wang;Shoufeng Liu;Yanling Tian

  • A novel XYZ micro/nano positioner with an amplifier based on L-shape levers and half-bridge structure

    Yanling Tian;Yue Ma;Fujun Wang;Kangkang Lu

  • A 2-DOF nano-positioning scanner with novel compound decoupling-guiding mechanism

    Fujun Wang;Xiaolu Zhao;Zhichen Huo;Beichao Shi

  • A novel monolithic piezoelectric actuated flexure-mechanism based wire clamp for microelectronic device packaging

    Cunman Liang;Fujun Wang;Yanling Tian;Xingyu Zhao

  • A Flexure-Based Kinematically Decoupled Micropositioning Stage With a Centimeter Range Dedicated to Micro/Nano Manufacturing

    Fujun Wang;Cunman Liang;Yanling Tian;Xingyu Zhao

Frequent Co-Authors

Dawei Zhang
Dawei Zhang Tianjin University
Yanling Tian
Yanling Tian University of Warwick
Yanling Tian
Yanling Tian University of Warwick
Bijan Shirinzadeh
Bijan Shirinzadeh Monash University
Sergej Fatikow
Sergej Fatikow Carl von Ossietzky University of Oldenburg
Wei Zhang
Wei Zhang University of Connecticut
Kornel F. Ehmann
Kornel F. Ehmann Northwestern University
Placid Mathew Ferreira
Placid Mathew Ferreira University of Illinois at Urbana-Champaign
Huaizhong Li
Huaizhong Li Griffith University

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