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具有静态偏置的双稳态屈曲梁的谐波诱导形状变形

Harmonically Induced Shape Morphing of Bistable Buckled Beam with Static Bias.

作者信息

Hasan Md Nahid, Paul Sharat, Greenwood Taylor E, Parker Robert G, Kong Yong Lin, Wang Pai

机构信息

Department of Mechanical Engineering, University of Utah, Salt Lake City, UT 84112, USA.

Department of Mechanical Engineering, Montana Technological University, Butte, MT 59701, USA.

出版信息

Extreme Mech Lett. 2025 May;76. doi: 10.1016/j.eml.2025.102299. Epub 2025 Feb 23.

Abstract

We investigate the effect of a constant static bias force on the dynamically induced shape morphing of a pre-buckled bistable beam, focusing on the beam's ability to change its vibration to be near different stable states under harmonic excitation. Our study explores four categories of oscillatory motions: switching, reverting, vacillating, and intra-well in the parameter space. We aim to achieve transitions between stable states of the pre-buckled bistable beam with minimal excitation amplitude. Our findings demonstrate the synergistic effects between dynamic excitation and static bias force, showing a broadening of the non-fractal region for switching behavior (i.e., switching from the first stable state to the second stable state) in the parameter space. This study advances the understanding of the dynamics of key structural components for multi-stable mechanical metamaterials, offering new possibilities for novel designs in adaptive applications.

摘要

我们研究了恒定静态偏置力对预屈曲双稳态梁动态诱导形状变形的影响,重点关注梁在谐波激励下将其振动改变至接近不同稳定状态的能力。我们的研究在参数空间中探索了四类振荡运动:切换、反转、摆动和阱内运动。我们旨在以最小的激励幅度实现预屈曲双稳态梁稳定状态之间的转变。我们的研究结果证明了动态激励和静态偏置力之间的协同效应,表明在参数空间中切换行为(即从第一稳定状态切换到第二稳定状态)的非分形区域有所拓宽。这项研究增进了对多稳态机械超材料关键结构部件动力学的理解,为自适应应用中的新颖设计提供了新的可能性。

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