Joker Chen
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Design and Performance Tests of a high volumetric Figure of Merit Regenerative Damper for Vehicle Suspension Systems
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Affiliation of Author(s):航空学院

Journal:IMAGE SENSING TECHNOLOGIES: MATERIALS, DEVICES, SYSTEMS, AND APPLICATIONS IV

Key Words:magnetoelectric regenerative damper high volumetric Figure of Merit lumped parameter equivalent magnetic circuit finite element analysis energy harvesting vehicle suspension system

Abstract:Regenerative dampers for vehicle suspension systems that can harvest power at low frequencies efficiently are challenging to realise. To increase their energy harvesting efficiency, a type of high volumetric Figure of Merit magnetoelectric regenerative damper is proposed. To increase the magnetic linkage gradient of its coil in the moving direction and in its motion region, lumped parameter equivalent magnetic circuit model is adopted in its magnetic structural parameter optimization. Finite element analysis is then used to verify the analytical model and theoretical results. Finally, 3 prototypes with different parametric combinations are manufactured and fabricated to do experiments. The experiments indicate that the optimised megnetoelectric regenerative damper can harvest vibration power of 16.3 watts and provide an adjustable damping coefficient that can reach 1605Ns/m when the damper in a relative velocity of 0.2m/s. The corresponding volumetric Figure of Merit can reach 8.3%, which is higher than most of the works presented in recent literatures. This type of regenerative damper can be used in vehicle suspension systems and meet their requirements. It also offers the opportunity to be applied in semi-active vehicle suspensions.

ISSN No.:0277-786X

Translation or Not:no

Date of Publication:2017-01-01

Co-author:任龙,Xia, Huakang

Correspondence Author:任龙,Joker Chen

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Professor
Supervisor of Doctorate Candidates

Gender:Male

Alma Mater:南京航空航天大学

Education Level:南京航空航天大学

Degree:Doctoral Degree in Engineering

School/Department:College of Aerospace Engineering

Discipline:Engineering Mechanics. 机械工程. Measurement Technology and Instrumentation

Business Address:明故宫校区18栋

Contact Information:rwchen@nuaa.edu.cn

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