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Hyper-damping properties of a stiff and stable linear oscillator with a negative stiffness element

机译:具有负刚度元素的刚性且稳定的线性振荡器的超阻尼特性

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摘要

A simple, stiff, statically and dynamically stable linear oscillator incorporating a negative stiffness element is used as a template to provide a generic theoretical basis for a novel vibration damping and isolation concept. This oscillator is designed to present the same overall static stiffness, the same mass and to use the same damping element as a reference classical linear SDoF oscillator. Thus, no increase of the structure mass or the viscous damping is needed, as in the case of a traditional linear isolator, no decrease of the overall structure stiffness is required as in the case of ’zero-stiffness’ oscillators with embedded negative stiffness elements. The difference from these two templates consists entirely in the proper redistribution and reallocation of the stiffness and the damping elements of the system. Once such an oscillator is optimally designed, it is shown to exhibit an extraordinary apparent damping ratio, which is even several orders of magnitude higher than that of the original SDoF system, especially in cases where the original damping of the SDoF system is extremely low. This extraordinary damping behaviour is a result of the phase difference between the positive and the negative stiffness elastic forces, which is in turn a consequence of the proper redistribution of the stiffness and the damping elements. This fact ensures that an adequate level of elastic forces exists throughout the entire frequency range, able to counteract the inertial and the excitation forces. Consequently, a resonance phenomenon, which is inherent in the original linear SDoF system, cannot emerge in the proposed oscillator. The optimal parameter selection for the design of the negative stiffness oscillator is discussed. To further exhibit the advantages that such a design can generate, the suggested oscillator is implemented within a periodic acoustic metamaterial structure, inducing a radical increase in the damping of the propagating acoustic waves. The concept may find numerous technological applications, either as traditional vibration isolators, or within advanced composite materials and metamaterials.
机译:包含负刚度元素的简单,刚性,静态和动态稳定的线性振荡器用作模板,为新颖的振动阻尼和隔离概念提供了通用的理论基础。该振荡器设计为具有相同的整体静态刚度,相同的质量,并使用与参考经典线性sF振荡器相同的阻尼元件。因此,不需要像传统线性隔离器那样增加结构质量或粘性阻尼,也不需要像嵌入了负刚度元件的“零刚度”振荡器那样降低整体结构刚度。与这两个模板的区别完全在于系统的刚度和阻尼元素的正确重新分配和重新分配。一旦对这种振荡器进行了最佳设计,就会显示出异常的表观阻尼比,甚至比原始sF系统的表观阻尼率还要高几个数量级,特别是在sf系统的原始阻尼极低的情况下。这种非凡的阻尼性能是正刚度弹性力和负刚度弹性力之间的相位差的结果,而这又是刚度和阻尼元件正确重新分布的结果。这个事实确保了在整个频率范围内存在足够水平的弹力,能够抵消惯性力和激励力。因此,原始线性sf系统固有的共振现象不会在提出的振荡器中出现。讨论了负刚度振荡器设计的最佳参数选择。为了进一步展示这种设计可以产生的优势,建议的振荡器在周期性的声学超材料结构中实现,从而导致传播声波的阻尼得到根本性的提高。该概念可能会发现许多技术应用,无论是作为传统的振动隔离器,还是在先进的复合材料和超材料中。

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