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首页> 外文期刊>Journal of intelligent material systems and structures >Optimization and performance analysis of magnetorheological fluid damper considering different piston configurations
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Optimization and performance analysis of magnetorheological fluid damper considering different piston configurations

机译:考虑不同活塞配置的磁流变阻尼器的优化与性能分析

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This article presents the design and multi-physics coupling analysis of a shear-valve-mode magnetorheological fluid damper with different piston configurations. The finite element model is built to study the effects of the shape of the piston slot and magnetism-insulators at both ends of the piston yoke on the performance of the magnetorheological damper. Particle swarm optimization and finite element simulation are combined to optimize the structural parameters of the magnetorheological damper. The influences of different piston configurations on the magnetic flux density in the working gap, the shear stress, the viscous stress, and the dynamic range are investigated. The simulation results reveal that the magnetorheological damper, in which the corners of the piston slot are chamfered and the edges of the magnetism-insulators are filleted, exhibits a better damping performance. Furthermore, magnetorheological dampers with and without magnetism-insulators are fabricated. The influences of control current, displacement, and velocity on the mechanical performance of the magnetorheological dampers are experimentally investigated, and the experiment results are in accordance with the theoretical derivation and finite element simulation results.
机译:本文介绍了具有不同活塞配置的剪切阀模式磁流变流体阻尼器的设计和多物理场耦合分析。建立了有限元模型,以研究活塞轭两端的活塞槽和磁绝缘体的形状对磁流变阻尼器性能的影响。结合粒子群优化和有限元模拟来优化磁流变阻尼器的结构参数。研究了不同活塞配置对工作间隙中的磁通密度,剪切应力,粘滞应力和动态范围的影响。仿真结果表明,磁流变阻尼器具有更好的阻尼性能,其中活塞槽的角部被倒角,磁绝缘体的边缘被倒角。此外,制造了具有和不具有磁绝缘体的磁流变阻尼器。实验研究了控制电流,位移和速度对磁流变阻尼器机械性能的影响,实验结果与理论推导和有限元模拟结果相吻合。

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