非对称铺设双稳态正交复合材料层合方形板的 静力学与动力学分析
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O322; TB334

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国家自然科学基金资助项目(12102031);北京建筑大学“金字塔人才培养工程”项目(JDYC20220828)


Statics and dynamics analysis of bistable asymmetric cross‑ply composite laminated square plates
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    摘要:

    建立了非对称铺设双稳态正交复合材料层合方形板的静力学和动力学模型。通过固化分析确定了三个平衡 状态,展示了以温差绝对值为控制参数的超临界叉形分岔。通过稳定性分析确定了三个平衡状态为两个稳定平衡 状态和一个不稳定平衡状态。通过静力学分析确定了双势阱势能曲线,这有助于对动态跳跃现象的研究。通过在 动力学分析中引入阻尼,分析了平衡点的动态分岔。通过数值模拟讨论了基础激励频率对动力学特性的影响。当 激励频率处于一定范围内时,系统会发生双势阱大振幅动态跳跃和非线性振动,此频率范围可以被设定为特定频率 带宽。双稳态系统的主要动力学特性表现为周期振动、概周期振动和混沌振动。

    Abstract:

    A theoretical model for statics and dynamics of bistable asymmetric cross-ply composite laminated square plates is estab? lished. Three equilibrium states are determined by curing analysis in statics. Meanwhile the super-critical pitchfork bifurcation with temperature difference as the control parameter is explicated in the process of curing. Two stable states and one unstable state are demonstrated by stability analysis. The potential energy curve with two potential wells is depicted, which can contribute to study? ing dynamic snap-through. Moreover, the dynamic bifurcation for the equilibrium points is induced by introducing damping in dy? namics. The influence of the base excitation frequency on the dynamics is discussed by numerical simulation. When the excitation frequency is located in a certain range, the large-amplitude dynamic snap-through and nonlinear vibrations with two potential wells can occur. The dynamics behaviors of the bistable system are overwhelmingly dominated by periodic vibration, quasi-periodic vibra? tion and chaotic vibration. The certain frequency range, where the large-amplitude dynamic snap-through and nonlinear vibrations with two potential wells can occur, can be defined as a certain frequency broadband which proofs bistable asymmetric cross-ply composite laminated square plates to be applicable to bistable energy harvesters.

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郭振坤,徐佳乐,董 挺.非对称铺设双稳态正交复合材料层合方形板的 静力学与动力学分析[J].振动工程学报,2024,37(7):1169~1181.[GUO Zhen?kun, XU Jia?le, DONG Ting. Statics and dynamics analysis of bistable asymmetric cross‑ply composite laminated square plates[J]. Journal of Vibration Engineering,2024,37(7):1169~1181.]

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  • 在线发布日期: 2024-08-06
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