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Design, Analysis and Electromagnetic Simulation of a Multi-Disc Automotive Magnetorheological Brake

机译:多片汽车磁流变制动器的设计,分析和电磁仿真

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In order to further improve the safety and reliability of automotive braking system, this study proposes a multi-disc magnetorheological brake (MRB) and the characteristics of its output braking torque are analyzed. In this paper, firstly, the output braking torque of multi-disc MRB is modeled theoretically. Then, the structural model of the MRB is designed and presented. After these, the curve of the relation between coil current and braking torque is obtained and polynomial fitting is carried out by matlab/simulink. Finally, the magnetic circuit of the MRB and the magnetic flux density at the working gap of the MRB are verified by finite element electromagnetic simulation. The results indicate that the MRB can satisfy the requirement of maximum braking torque and still have a margin at the same time. In addition, the coil current and braking torque show a good linear relationship in a certain extent and range, which is conducive to the development of linear control system.
机译:为了进一步提高汽车制动系统的安全性和可靠性,本研究提出了一种多片磁流变制动器(MRB),并对其输出制动转矩的特性进行了分析。本文首先对多盘MRB的输出制动力矩进行了理论建模。然后,设计并提出了MRB的结构模型。之后,获得线圈电流和制动转矩之间的关系曲线,并通过matlab / simulink进行多项式拟合。最后,通过有限元电磁仿真验证了MRB的磁路和工作间隙处的磁通密度。结果表明,MRB既可以满足最大制动力矩的要求,又具有一定的裕量。另外,线圈电流和制动转矩在一定范围和范围内呈现良好的线性关系,有利于线性控制系统的发展。

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