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Dynamics of Miura Folded Metamaterials

机译:三浦折叠超材料的动力学

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摘要

In this paper, we investigated dynamics of Miura-origami structures composed of Miura cells with rigid facets and elastic hinges, under three types of excitation: harmonic force, harmonic displacement and impact. Under the simple harmonic excitations of force and displacement, different crease stiffnesses affected the vibration responses of Miura folded Metamaterials. The results show that the Miura model of the single-degree-of-freedom structure has similar frequency responses under the two kinds of excitation. By changing the crease stiffness, it can change its resonance frequency and achieve a good low-frequency vibration isolation effect. The multi-degree-of-freedom model can reduce the resonance frequency by increasing the number of stacks. Under the impact load, there are two types of mechanical waves: shock wave and vibration wave. Except the first layer, the other Miura units will have the deformation characteristics of stretching before compression. The propagation speed of mechanical waves and ratio of the maximum strain amplitude at different layers can be designed by changing the crease stiffness. Meanwhile, the response of multi-layer stacked Miura folded Metamaterials is very different at steady state. The influence of damping coefficient on vibration wave is more obvious. When the impact load amplitude is changed, the response at steady state is almost constant.
机译:在本文中,我们研究了由具有刚性小面和弹性铰链的Miura细胞组成的Miura折纸结构在三种激励类型下的动力学:谐波力,谐波位移和冲击。在力和位移的简谐激励下,不同的折痕刚度影响了Miura折叠超材料的振动响应。结果表明,在两种激励下,单自由度结构的Miura模型具有相似的频率响应。通过改变抗折刚度,可以改变其共振频率,达到良好的低频隔振效果。多自由度模型可以通过增加堆栈数来降低共振频率。在冲击载荷下,有两种类型的机械波:冲击波和振动波。除第一层外,其他Miura单元将具有压缩前拉伸的变形特征。可以通过改变折痕刚度来设计机械波在不同层的传播速度和最大应变振幅之比。同时,多层堆叠的Miura折叠超材料在稳态下的响应差异很大。阻尼系数对振动波的影响更为明显。当冲击载荷幅度改变时,稳态下的响应几乎是恒定的。

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