The Hybrid Brake Model and Its Validation

Author:

Holtmann Christoph1ORCID,Köhler Christoph1ORCID,Weber Christian1ORCID,Rinderknecht Frank1ORCID

Affiliation:

1. Institute of Vehicle Concepts, German Aerospace Centre, 70569 Stuttgart, Germany

Abstract

As an extension of a paper published at the 24th International Conference on Mechatronics Technology, ICMT 2021 conference, this paper shows the concept, design method, and model of a hybrid brake with additional validation. An eddy current brake cannot be used to decelerate a vehicle to a standstill. However, the magnetic attraction force between the rotor and stator of an eddy current brake can be used to generate an additional mechanical friction torque. By using a disc spring between the rotor and stator, the eddy current brake is extended to a so-called hybrid brake. In particular, the model and design method of the disc spring are the focus of this work. Using a system model that includes the electromagnetic and mechanical domains, the wear reduction compared to a conventional friction brake and the dynamic behaviour depending on the spring parameters are investigated. Finally, a disc spring is designed in FEM with the desired force–displacement curve. In addition, a working demonstrator of a hybrid brake is constructed, and the electromagnetic and mechanical system models are compared with the experimental results. For the first time, it is shown that the concept of using the magnetic attraction force between the rotor and stator of an eddy current brake for braking to a stop is working. In a speed range of 0–7500 rpm, it is possible to generate a torque of 100 Nm, whereby at speeds higher than 3500 rpm, the torque is generated in a wear-free manner by eddy currents. However, in order to be valid, the model must be extended to represent the deformation of the rotor.

Funder

Ministerium fuer Wirtschaft, Arbeit und Wohnungsbau

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

Reference17 articles.

1. Holtmann, C. (2021, January 17–21). Design and Optimization Method for a High Power Eddy Current Brake with a Magneto Isotropic Material Structure for the Use in Electrified Heavy Duty Trucks. Proceedings of the EUROBRAKE 2021, Online.

2. Gay, S.E., and Ehsani, M. (2005, January 7–9). Optimized Design of an Integrated Eddy-Current and Friction Brake for Automotive Applications. Proceedings of the 2005 IEEE Vehicle Power and Propulsion Conference, Chicago, IL, USA.

3. Hybrid Electromagnetic Brakes: Design and Performance Evaluation;Yazdanpanah;IEEE Trans. Energy Convers.,2015

4. Design of a frictional–electromagnetic compound disk brake for automotives;Huang;Proc. Inst. Mech. Eng. Part J. Automob. Eng.,2020

5. Design and thermal analysis of a novel permanent magnet-friction integrated brake for vehicle;Wang;Therm. Sci.,2020

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