Design and Simulation of Magnetorheological Brake Supporting Downhill Van Truck

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Abstract

Depressing the brake when the vehicle is moving downhill for a long time will have a bad effect on the car's brake system. Typically, the phenomenon of friction, wear, and temperature rise occurs at the brake pads. These can be the causes of brake failure. This paper presents the idea of designing and simulating magneto-rheological brake (MRB) model to assist van trucks downhill without interfering with the traditional braking system. Research on brake models using: Magneto-rheological fluid (MRF), a smart material that is gradually being applied in many fields of science and technology. The operation of this type of brake is based on the inherent advantages of MR fluids such as continuously changing dynamic range and fast response, actively changing the viscosity of the fluid when changing the magnetic field applied to the coil. In order to improve safety and initiative in the braking process of the car. The study presents the process of calculating and simulating the braking torque generated from this brake model. Thereby helping to open a new direction for the traditional brake system in cars as well as contributing to the development of the automobile industry in general.
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支撑下坡货车的磁流变制动器设计与仿真
车辆在下坡行驶时长时间踩刹车,会对汽车的制动系统产生不良影响。通常情况下,刹车片会出现摩擦、磨损和温度升高的现象。这些都可能是刹车失灵的原因。本文提出了在不影响传统制动系统的前提下,设计和仿真磁流变制动(MRB)模型以辅助货车下坡的思路。采用磁流变液(MRF)的制动模型研究,这是一种逐渐应用于许多科技领域的智能材料。这类制动器的运行是基于MR流体连续变化动态范围和快速响应等固有优势,在改变施加在线圈上的磁场时主动改变流体的粘度。为了提高汽车在制动过程中的安全性和主动性。研究给出了该制动模型产生的制动力矩的计算和仿真过程。从而为传统的汽车制动系统开辟了新的方向,也为整个汽车工业的发展做出了贡献。
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