双稳态
消散
非线性系统
振动
控制理论(社会学)
分叉
稳健性(进化)
振动控制
物理
不变流形
刚度
计算机模拟
能量收集
宽带
失谐
频域
工程类
能量(信号处理)
执行机构
机械
计算机科学
阻尼器
时域
分岔理论
不变(物理)
机械能
谐波平衡
限制
隔振
数学
经典力学
理论(学习稳定性)
作者
Jiawen Chu,Kai Chai,Jingjun Lou,Qingchao Yang
标识
DOI:10.1142/s0219455427500921
摘要
Bistable nonlinear energy sinks (BNES) suffer from restricted activation of strongly modulated responses (SMR) due to excitation-amplitude sensitivity, limiting broadband vibration control. This study proposes a grounded damping bistable nonlinear energy sink (GD-BNES) to lower energy transfer thresholds by optimized damping configuration. Based on a two-degree-of-freedom coupled dynamical model, this study analytically investigates the topological evolution of slow invariant manifold (SIM) and bifurcation characteristics via the complexification-averaging method and multi-scale analysis. The triggering conditions for SMR are quantitatively identified. Numerical verification confirms that the GD-BNES exhibits enhanced efficiency at high energy levels under both harmonic and impact excitations compared to cubic NES (CNES) and BNES. This performance superiority stems from its unique independent dissipation pathway provided by grounded damping and expanded stability domain through negative stiffness effects. This finding has important practical significance for enhancing the vibration suppression efficacy and operational robustness of NES, while offering a new design paradigm for NES structural configurations.
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