永磁式磁流变传动装置结构设计及特性研究

Structural design and characteristic study of permanent magnet magnetorheological transmission device

  • 摘要: 对永磁式磁流变传动装置进行了传动特性分析。传动装置采用圆筒型工作结构且励磁源设置为永磁体内置式,通过特有的导磁柱结构干扰工作区域处的流场,并增强工作区域处的磁场强度。在剪切-挤压的共同作用下能够更大程度地发挥出磁流变传动装置输出扭矩的能力。建立模型分析传动装置的输出转矩值的影响因素,研制了磁流变传动装置样机,并对样机进行了静载特性、调速特性和调矩特性的测试。结果表明:设计的传动装置可以持续稳定地传递力矩。磁场强度的增加会有效地调节输出转速。当磁场强度一定时,整个传动装置的输出转矩与电机输入速度呈现出一定的线性关系,表现为输出转矩持续且稳定。

     

    Abstract: In this paper, the transmission characteristics of permanent magnet magnetorheological transmission are analyzed. The transmission device adopts cylindric working structure and the excitation source is set as the permanent magnet built-in type, which interferes with the flow field at the working area through the special magnetic column structure, and enhances the magnetic field strength at the working area. Under the combined action of shear and extrusion, the output torque capacity of magnetorheological transmission device can be developed to a greater extent. The model was established to analyze the influencing factors of the output torque value of the transmission device, and the prototype of the magnetorheological transmission device was developed, and the static load characteristics, speed regulation characteristics and torque characteristics of the prototype were tested. The results show that the design of the transmission device can be continuous and stable transfer torque.The increase of the magnetic field strength will effectively adjust the output speed. When the magnetic field strength is constant, the output torque of the whole transmission device has a certain linear relationship with the input speed of the motor, showing that the output torque is continuous and stable.

     

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