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

Jong-Seok Oh, Chang Won Shul, Tae Hyeong Kim, Tae-Hoon Lee, Sung-Wan Son, Seung-Bok Choi

Journal: International journal of molecular sciences 2020;21(3):1149

PMID: 32050496

Abstract

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.

Address: Division of Mechanical and Automotive Engineering, Kongju National University, Chungnam, 31080, Korea.; Agency for Defense Development, Daejeon 305-600, Korea.; Department of Mechanical Engineering, Smart Structures and Systems Laboratory, Inha University, Incheon, 22212, Korea.; RMS Technology, Pungse Industrial Complex A17-6, Boseong-ri, Chungcheongnam-do, 31217, Korea.
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