Parametric Modeling of a Magnetorheological Engine Mount Based on a Modified Polynomial Bingham Model
This work mainly addresses the establishment of a phenomenological mechanical model for magnetorheological (MR) engine mounts under frequency variation and magnetic variation effects. First, the mounts' reaction force is divided into three parts: a Coulomb damping force, an elastic reaction for...
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Frontiers Media S.A.
2019-04-01
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doaj-20b8d23c6b724d9e99663471612bbe6b2020-11-25T00:09:03ZengFrontiers Media S.A.Frontiers in Materials2296-80162019-04-01610.3389/fmats.2019.00068425344Parametric Modeling of a Magnetorheological Engine Mount Based on a Modified Polynomial Bingham ModelShiwei Chen0Rui Li1Pengfei Du2Hengwei Zheng3Dingyu Li4Chongqing University of Science and Technology, Academe of Mathematics and Physics, Chongqing, ChinaDepartment of Automation, Chongqing University of Posts and Telecommunications, Chongqing, ChinaChongqing University of Science and Technology, Academe of Mathematics and Physics, Chongqing, ChinaChongqing University of Science and Technology, Academe of Mathematics and Physics, Chongqing, ChinaChongqing University of Science and Technology, Academe of Mathematics and Physics, Chongqing, ChinaThis work mainly addresses the establishment of a phenomenological mechanical model for magnetorheological (MR) engine mounts under frequency variation and magnetic variation effects. First, the mounts' reaction force is divided into three parts: a Coulomb damping force, an elastic reaction force, and a viscous damping force. Then, by using correlation analysis on these forces with the frequency and magnetic field, a modified polynomial Bingham parameterized model is proposed. This model takes external current and external loading frequency as the variables. As a result of analyzing the relationship between energy dissipation and storage caused by the external displacement excitation, an identifying method is proposed to identify the nine parameters in the model. Based on this model, an experimental scheme was designed, and the force–displacement relationship of a typical MR mount under different working conditions was tested through an experiment. By using the proposed method, the relationship of the reaction force of an MR mount with current and external loading frequency was obtained. The experimental results show that the proposed model can correctly reflect the wide-frequency dynamic characteristics of the mounts in dynamic stiffness, lagging angle, and hysteretic curve.https://www.frontiersin.org/article/10.3389/fmats.2019.00068/fullengine isolationMRF mountslaboratory experimentBingham modelvibration control |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shiwei Chen Rui Li Pengfei Du Hengwei Zheng Dingyu Li |
spellingShingle |
Shiwei Chen Rui Li Pengfei Du Hengwei Zheng Dingyu Li Parametric Modeling of a Magnetorheological Engine Mount Based on a Modified Polynomial Bingham Model Frontiers in Materials engine isolation MRF mounts laboratory experiment Bingham model vibration control |
author_facet |
Shiwei Chen Rui Li Pengfei Du Hengwei Zheng Dingyu Li |
author_sort |
Shiwei Chen |
title |
Parametric Modeling of a Magnetorheological Engine Mount Based on a Modified Polynomial Bingham Model |
title_short |
Parametric Modeling of a Magnetorheological Engine Mount Based on a Modified Polynomial Bingham Model |
title_full |
Parametric Modeling of a Magnetorheological Engine Mount Based on a Modified Polynomial Bingham Model |
title_fullStr |
Parametric Modeling of a Magnetorheological Engine Mount Based on a Modified Polynomial Bingham Model |
title_full_unstemmed |
Parametric Modeling of a Magnetorheological Engine Mount Based on a Modified Polynomial Bingham Model |
title_sort |
parametric modeling of a magnetorheological engine mount based on a modified polynomial bingham model |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Materials |
issn |
2296-8016 |
publishDate |
2019-04-01 |
description |
This work mainly addresses the establishment of a phenomenological mechanical model for magnetorheological (MR) engine mounts under frequency variation and magnetic variation effects. First, the mounts' reaction force is divided into three parts: a Coulomb damping force, an elastic reaction force, and a viscous damping force. Then, by using correlation analysis on these forces with the frequency and magnetic field, a modified polynomial Bingham parameterized model is proposed. This model takes external current and external loading frequency as the variables. As a result of analyzing the relationship between energy dissipation and storage caused by the external displacement excitation, an identifying method is proposed to identify the nine parameters in the model. Based on this model, an experimental scheme was designed, and the force–displacement relationship of a typical MR mount under different working conditions was tested through an experiment. By using the proposed method, the relationship of the reaction force of an MR mount with current and external loading frequency was obtained. The experimental results show that the proposed model can correctly reflect the wide-frequency dynamic characteristics of the mounts in dynamic stiffness, lagging angle, and hysteretic curve. |
topic |
engine isolation MRF mounts laboratory experiment Bingham model vibration control |
url |
https://www.frontiersin.org/article/10.3389/fmats.2019.00068/full |
work_keys_str_mv |
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