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Dynamic Analysis of Sphere-Like Iron Particles Based Magnetorheological Damper for Waveform-Generating Test System

机译:基于球形的铁颗粒磁流变阻尼器的波形生成测试系统动力学分析

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摘要

In this study, a new double pulse waveform-generating test system with an integrated magnetorheological (MR) damper is proposed. Since the total shear stress of MR fluid can be varied according to the shape of particles, sphere-like iron particles-based MR fluid is filled into the MR damper. The test system consists of a velocity generator, three masses (impact, test, and dummy), a spring, and an MR damper. To tune the double pulse waveform profile, a damping force model is constructed to determine the fundamental parameters of the simulator. Then, the first and second shock waveform profiles are analyzed to solve the governing equation of motions representing the damping force and velocity. The mathematical model of the MR damper is formulated and applied to a simulator with a graphical user interface programmed using MATLAB. The effectiveness of the proposed simulator-featuring controllable MR damper is demonstrated by comparing the simulation and experimental results.
机译:在这项研究中,提出了一个新的带有集成磁流变(MR)阻尼器的双脉冲波形生成测试系统。由于可以根据颗粒的形状改变MR流体的总剪切应力,因此将基于球状铁颗粒的MR流体填充到MR阻尼器中。测试系统由一个速度发生器,三个质量块(冲击,测试和虚拟),一个弹簧和一个MR阻尼器组成。为了调整双脉冲波形轮廓,构建了阻尼力模型以确定模拟器的基本参数。然后,分析第一和第二冲击波形曲线以求解代表阻尼力和速度的运动控制方程。制定了MR阻尼器的数学模型,并将其应用到具有使用MATLAB编程的图形用户界面的模拟器。通过比较仿真结果和实验结果,证明了所提出的具有模拟器功能的可控MR阻尼器的有效性。

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