Affiliation:
1. Southeast University
2. Harbin Engineering University
3. Ghent University
Abstract
Abstract
In response to limitations in vibration suppression performance of traditional tuned mass damper (TMD) and conventional nonlinear energy sink (NES) due to energy threshold constraints and narrow vibration bands, this study proposes a magnet tri-stable NES (MTNES) formed by combining a linear spring and magnets. The mechanism of the MTNES is first introduced in this study, which reveals the existence of the three stable points in the system. Subsequently, the equations of motion of the coupled system with MTNES attached to the cantilever beam are derived, and the optimal parameter combination for MTNES is determined using a global optimization method. Furthermore, the influence of MTNES parameter variations on vibration suppression efficiency is studied through parameter analysis, revealing the robust nature of the MTNES. Then, the restoring force of the MTNES is simplified into polynomial form, and the system response is analyzed by using the harmonic balance method and Runge-Kutta method. Finally, experimental studies on the coupled system are conducted. The results indicate that MTNES can effectively suppress the resonance of the host structure within a wide frequency band, with the highest vibration suppression rate of up to 66% under strong modulated response. Additionally, the results of numerical calculations and theoretical analysis are in good agreement with that of the experiment.
Publisher
Research Square Platform LLC