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Structural vibration absorption in multilayered sandwich structures using negative stiffness nonlinear oscillators

机译:使用负刚度非线性振荡器的多层夹层结构中的结构振动吸收

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We hereby report on the incorporation of negative stiffness oscillators realized through Euler buckled beams within vibrating multilayered sandwich structures. Such devices have been extensively investigated as single degree of freedom isolation mechanisms when mechanical grounding is available. It is worth exploring the influences of implementing such mechanisms within continuous multilayered vibrating structures given their interesting nonlinear vibration isolation characteristics. A numerical investigation is presented in this work with the computed performance being compared against the one of linear oscillators of equal mass and damping properties. Despite the fact that the negative stiffness nonlinear (NSN) oscillators were not properly optimized for the specific application due to the implied computational cost, they exhibited superior performance to their linear counterparts in a broadband sense. Considering the dependence of the linear resonators' performance to manufacturing precision and narrowband excitation, the NSN concept is an excellent candidate for attenuating structural vibration across a wide spectrum. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在此,我们报告了通过振动多层夹层结构内通过欧拉扣梁实现的负刚度振荡器的掺入。当机械接地可获得时,这些装置已被广泛地调查为单一的自由度隔离机制。鉴于其有趣的非线性振动隔离特性,值得探索在连续多层振动结构中实施这种机制的影响。在这项工作中呈现了数值调查,并且计算性能与相同质量和阻尼性的线性振荡器之一进行比较。尽管由于隐含的计算成本没有针对具体应用程序进行负刚度非线性(NSN)振荡器,但它们在宽带感的线性对应物中表现出卓越的性能。考虑到线性谐振器的性能对制造精度和窄带激励的依赖性,NSN概念是用于在宽频谱上减弱结构振动的优异候选者。 (c)2021 elestvier有限公司保留所有权利。

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