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contributor authorJun, Wang
contributor authorZi-Jian, Yang
contributor authorYun-Hao, Zhang
contributor authorJian-Chao, Zhang
date accessioned2024-04-24T22:47:09Z
date available2024-04-24T22:47:09Z
date copyright12/26/2023 12:00:00 AM
date issued2023
identifier issn1555-1415
identifier othercnd_019_03_031001.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4295875
description abstractNonlinear energy sinks (NES) are highly efficient vibration energy absorption and dissipation devices, and play an important vibration-suppression role in many types of structures. In this study, the influence of parameters on the combined stiffness nonlinear energy sink system is revealed from the perspective of energy, in which combined-stiffness terms are composed of piecewise linear stiffness and cubic stiffness. First, the slow-varying derivative of the combined-stiffness nonlinear energy sink system is calculated based on the complexification-averaging and multiscale methods. Second, an approximate expression for the extreme points on the slow-invariant manifold (SIM) of the system is derived by polynomial approximation, and the energy dissipation equation of the combined-stiffness nonlinear energy sink system is derived. The impacts of the stiffness gap, piecewise linear stiffness coefficient, and cubic stiffness coefficient on the system are analyzed by studying the energy transfer efficiency equation. Additionally, the relationship between the damping ratio of the primary structure and the dissipation time is analyzed.
publisherThe American Society of Mechanical Engineers (ASME)
titleEnergy Transfer and Dissipation in Combined-Stiffness Nonlinear Energy Sink Systems
typeJournal Paper
journal volume19
journal issue3
journal titleJournal of Computational and Nonlinear Dynamics
identifier doi10.1115/1.4064271
journal fristpage31001-1
journal lastpage31001-12
page12
treeJournal of Computational and Nonlinear Dynamics:;2023:;volume( 019 ):;issue: 003
contenttypeFulltext


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