Semi-active Spiral Flow Channel Magnetorheological Damper

Jinglong Tong, Kuangyuh Huang
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Abstract

The Magneto Rheological Fluid, MRF is a reversible material, this material would be an idea semi-active control device due to its reversible and easy-control properties. In this research, Solid Works 3D drawing software is used as the structural design and Max Well magnetic field analysis software is used to simulate the lines of magnetic force toward the innovation design "semi-active spiral flow channel magneto rheological damper" to improve the heat dissipation and the problem of precipitation. The Performance test of semi-active spiral flow channel magneto rheological damper uses ball screw and AC Servo Motor as actuator, the servo control system's function of displacement recorder and load cell as recorder of damping force. The spiral flow channel MR damper is an innovative design, the spiral flow can not only increase the length of the flow channel in a fixed distance, but also changes the excitating paramagnetic particles direction to be vertical with the direction of flow, and thus increases the ultimate shear strength of MRF. Without applying magnetic field, the spiral flow channel MR damper can generate the maximum damping force of 103N. When the current is 3A, the maximum damping force is about 1970N, when the damping force adjustment coefficient is 4.88(=1970/403), the damper is with high range of adjustable damping force. Most importantly, this design establishes a simple structure with lower cost.
半主动螺旋流道磁流变阻尼器
磁流变液(MRF)是一种可逆材料,由于其可逆和易于控制的特性,这种材料将成为一种理想的半主动控制装置。本研究采用Solid Works三维绘图软件进行结构设计,采用Max Well磁场分析软件对创新设计的“半主动螺旋流道磁流变阻尼器”进行磁力线模拟,以改善散热和沉淀问题。半主动螺旋流道磁流变阻尼器的性能试验采用滚珠丝杠和交流伺服电机作作动器,伺服控制系统的位移记录功能和称重传感器作阻尼力记录功能。螺旋流道磁流变阻尼器是一种创新设计,螺旋流动不仅可以在固定距离内增加流道长度,而且可以改变激励顺磁颗粒的方向与流动方向垂直,从而提高磁流变材料的极限抗剪强度。在不施加磁场的情况下,螺旋流道磁流变阻尼器可产生103N的最大阻尼力。当电流为3A时,最大阻尼力约为1970N,当阻尼力调节系数为4.88(=1970/403)时,阻尼力可调范围大。最重要的是,本设计结构简单,成本较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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