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[IEEE 2019 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC) - Munich, Germany (2019.6.23-2019.6.27)] 2019 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC) - Experimental Observation of Ultrafast THz Absorption Modulation in a Graphene-Based Metasurface

DOI:10.1109/CLEOE-EQEC.2019.8872148 出版年份:2019 更新时间:2025-09-23 15:21:01
摘要: Magnetorheological (MR) fluid is a widely used smart material due to its outstanding properties. This paper presents the design, development, modeling, and prototype testing of a self-energizing and self-powered MR brake-by-wire system, whose aforementioned capabilities are enabled by brake energy harvesting. The system is composed mainly of a typical T-shaped drum-type MR brake and a wedge mechanism for self-energizing purpose. Into the system, we also install a generator that harvests regenerative energy during braking, thereby creating a self-power capability that cannot be found in common vehicular brake-by-wire systems. Brake torque analysis is conducted, and the braking process is simulated in a MATLAB/Simulink environment. Finite element analysis of the magnetic field, temperature field, and mechanical strength of critical components is carried out. The simulation results are used to optimize design parameters and material selection. Finally, prototypes and a corresponding test rig are established. The experimental results show that only about 30 W of power is required to generate a 315 N·m brake torque and that the regenerative power produced by the generator can be used for braking, thus fulfilling the self-power requirement. The investigation of different wedge angles indicates that considerable self-energizing occurs under a small wedge angle. The findings demonstrate that the brake actuator, which has a relatively small volume, can significantly enlarge brake torque while harvesting brake energy. This feature enables the promising application of MR fluids in automotive brake systems.
作者: Liangyao Yu,Liangxu Ma,Jian Song,Xuhui Liu
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To develop a self-energizing and self-powered MR brake-by-wire system enabled by brake energy harvesting, capable of generating large brake torque for automotive application with controllable behaviors, while keeping a simple and light structure.

The proposed MR brake combines a typical T-shape drum-type MR actuator and a wedge mechanism, capable of generating a relatively large brake torque with a small and light structure within a limited volume. The system can harvest enough regenerative energy during braking processes, thus supplying power to the brake, especially in cases wherein the electricity systems of vehicles fail. The power consumed by the system is substantially lower than that used up by conventional brake-by-wire systems, indicating that the brake system can be powered by the existing electricity system of a vehicle.

The generated brake torque of the prototype is insufficient for automotive brake systems in emergency braking scenarios. Potential areas for optimization include reducing the thicknesses of MR fluids, brake disc, and shell without sacrificing strength, enhancing MR fluid properties relevant to shear stress, and increasing the number of coil turns or improving coil layout to enable the application of a high-intensity magnetic field to MR fluids.

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