Nonlinear resonant response of a buckled beam coupled with a boundary massive oscillator

被引:0
作者
Hao Chen
Tieding Guo
Wanzhi Qiao
Yunyue Cong
Houjun Kang
机构
[1] Guangxi University,College of Civil and Architecture Engineering
[2] Guangxi University,Research Centre of Engineering Mechanics
[3] Harbin University of Technology (Shenzhen),School of Civil and Environment Engineering
来源
Nonlinear Dynamics | 2024年 / 112卷
关键词
Nonlinear buckled beam; Beam–oscillator coupled dynamics; One-to-one internal resonance; Direct perturbation analysis; Vibration around buckled mode;
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学科分类号
摘要
This study focuses on nonlinear modal resonant dynamics of a buckled beam coupled with a boundary massive oscillator. To reveal buckled beam–boundary oscillator coupling effect, extended Hamilton principle is employed to derive a dynamic model with geometric nonlinearity included, and direct multiple-scale method (i.e., attacking directly partial differential equations) is then applied to reduce the original infinite-dimensional beam–support coupled system, leading to nonlinear modulation equations characterizing reduced slow dynamics of the coupled system, by focusing on beam’s one-to-one internally resonant dynamics around its first buckled shape. Time history responses, frequency responses, and Poincaré mapping are employed to investigate stability/bifurcation of nonlinear forced coupled dynamics, with one-to-one internal resonance activated or not.
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页码:3217 / 3240
页数:23
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