WEIBIN头像

WEIBIN

Associate professor

Research direction: Tribology,Hydrodynamics,SOC System,

BUCT

Education: Doctor

10 Access

  • Email: buctweibin@mail.buct.edu.cn
  • Office :

Introduction

WEI BIN,Associate professor, Beijing University of Chemical Technologybirth date1983.07

FieldTribologyacoustic levitation and tweezers microfluidics


Education

Work Experience

Social Position

Social Activities

Research

Research Interests:


1. Ultrasonics, Fluid Dynamics and Friction: Research focuses on ultrasonic suspension transmission, fluid lubrication and sealing, extreme transmission tribology and engineering mechanics.


2. Embedded system design(SOC)and intelligent manufacturing: Mainly research on digital twin technology, edge computing and STM32 embedded system design.


3. Robotics Engineering and Additive Manufacturing Polymer Molding: Mainly research on robotics engineering, 3D printing equipment and polymer material processing


Teaching

The main teaching courses: additive manufacturing technology and equipment, C language programming, microcomputer principle and interface design, digital image processing, embedded system design, single-chip microcomputer principle, etc.

Postgraduates

Funding

Research Projects:

2021.01-2023.12 Development Department - HY Project preside 

2019.01-2021.12 Beijing Natural Science Foundation - General Project preside

2017.01-2019.12 National Natural Science Foundation of China Youth Fund Project preside


Vertical Project

Horizontal Project

Publications

1. Controllable patterns and streaming of plane acoustic vortex with annular piezoelectric arrays excitation. Physics of Fluids.2021

2. The Gas Squeeze Film Characteristics of Acoustic Levitation with Various Excitation Disc Shapes Based on the Modified Reynolds EquationTribology Transactions

3. Tangential Motion Mechanism and Reverse Hydrodynamic Effects of Acoustic Platform with Non - Parallel Squeeze Film. Proceedings of the Institution of Mechanical Engineers. Part J: Journal of Engineering Tribology, 2019

4. Theoretical investigation and prototype design for non-parallel squeeze film movement platform driven by standing waves, Tribology International. 2018

5. Simulation and experiment of viscous torque for disengaged wet clutches of tracked vehicle, Proceedings of the Institution of Mechanical Engineers. Part J: Journal of Engineering Tribology, 2018

6. NFAL Prototype Design and Feasibility Analysis for Self-Levitated Conveying. Tribology transactions. 2016

7. Wet multi-disc brake temperature field and optimal oil supply under continuous braking condition. Industrial Lubrication Tribology. 2014  

8. Speed control friction experiment for different groove specimens. Proceedings of the Institution of Mechanical Engineers. Part J: Journal of Engineering Tribology. 2014

9. Friction mechanism and lock-up friction coefficient prediction for sinter bronze friction materials. Industry Lubrication and Tribology. 2014  

10. Mixed-modal Disk Gas Squeeze Film Theoretical and Experimental Analysis. International Journal of Modern Physics. 2013

11. A Linear Solution for Gas Squeeze Film Characteristics in Ultrasonic Excitation Condition. The journal of the Chinese society of mechanical engineers. 2013

12. Wet Friction-Elements Boundary Friction Mechanism and Friction Coefficient Prediction. Tribology in industry. 2012


Awards

Patent

Honor Reward

Admissions Information