曳引电梯磁流变制动器的多物理场数值分析与实验

Xiangpan Zheng, Hui Huang, S. Chen, Wenxiang Wang
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引用次数: 0

摘要

制动器是曳引电梯的重要安全装置,其安全性和可靠性是电梯安全运行的保障。该作品在分析电梯原有标准化参数的基础上,设计了一种基于磁流变效应的新型制动装置。采用数学物理方法,在有限元软件中建立了装置的磁场、流场和转子动态方程的多物理场数学模型。该模型考虑了磁场分布不均以及转速、体积力和温度变化对磁流变液的影响。因此,模拟结果非常接近实际设备。利用该模型进行了动态模拟,结果显示了磁流变制动装置在不同电流和转速下的制动扭矩、制动时间和温度的变化。仿真结果与实验结果一致,磁流变制动器在电梯中使用具有冲击小、噪音低、响应快、易于控制等优点。研究成果为工程领域新型曳引电梯制动装置提供了新思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-physical Field Numerical Analysis and Experiment on Magnetorheological Brake of Traction Elevator
Brake is an important safety device for traction elevators, and its safety and reliability ensure the safe operation of elevators. The work, analyzing the standardized original parameters of elevators, designed a new brake device based on magnetorheological effect. The mathematical physics method was used to establish the multiphysics mathematical model of magnetic field, flow field and rotor dynamic equation of device in finite element software. The model considered the influences of the uneven distribution of magnetic field as well as the changes of rotational speed, volumetric force and temperature change on magnetorheological fluid. Thus, the simulation was close to the actual device. The model was used for the dynamic simulation, which revealed the variation of braking torque, braking time and temperature of magnetorheological braking device under different currents and speeds. The simulation results are consistent with the experimental results, and the magnetorheological brake has the advantages of small impact, low noise, fast response and easy control when used in elevator. Research achievements of the work provide new thought for new brake device of traction elevator in engineering field.
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