This article focuses on modelling and validating a groundbreaking magnetorheological braking system. Addressing shortcomings in traditional automotive friction brake systems, including response delays, wear, and added mass from auxiliary components, the study employs a novel brake design combining mechanical and electrical elements for enhanced efficiency. Utilizing magnetorheological (MR) technology within a motor-brake system, the investigation explores the influence of external magnetic flux from the nearby motor on MR fluid movement, particularly under high-flux conditions. The evaluation of a high-magnetic-field mitigator is guided by simulated findings with the objective of resolving potential issues. An alternative method of resolving an interaction between an electric motor and a magnetorheological brake is presented. In addition, to test four configurations, multiple absorber materials are reviewed.

Electromagnetic Interaction Model between an Electric Motor and a Magnetorheological Brake / Caushaj, Sidorela; Imberti, Giovanni; de Carvalho Pinheiro, Henrique; Carello, Massimiliana. - In: DESIGNS. - ISSN 2411-9660. - ELETTRONICO. - 8:2(2024), pp. 1-21. [10.3390/designs8020025]

Electromagnetic Interaction Model between an Electric Motor and a Magnetorheological Brake

Imberti, Giovanni;de Carvalho Pinheiro, Henrique;Carello, Massimiliana
2024

Abstract

This article focuses on modelling and validating a groundbreaking magnetorheological braking system. Addressing shortcomings in traditional automotive friction brake systems, including response delays, wear, and added mass from auxiliary components, the study employs a novel brake design combining mechanical and electrical elements for enhanced efficiency. Utilizing magnetorheological (MR) technology within a motor-brake system, the investigation explores the influence of external magnetic flux from the nearby motor on MR fluid movement, particularly under high-flux conditions. The evaluation of a high-magnetic-field mitigator is guided by simulated findings with the objective of resolving potential issues. An alternative method of resolving an interaction between an electric motor and a magnetorheological brake is presented. In addition, to test four configurations, multiple absorber materials are reviewed.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2988281
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