Pyskir Adrien, Collet Manuel, Dimitrijevic Zoran, Lamarque Claude-Henri
LTDS UMR-CNRS 5513, École Centrale de Lyon, 69134 Écully, France.
Stellantis, 78140 Vélizy-Villacoublay, France.
Materials (Basel). 2021 Nov 9;14(22):6743. doi: 10.3390/ma14226743.
Metamaterials designate structures with properties exceeding bulk materials. Since the end of the 1990s, they have attracted ever-growing attention in many research fields such as electromagnetics, acoustics, and elastodynamics. This paper presents a numerical and experimental study on a locally resonant auxetic metamaterial for vibration isolation. The designed materials combine different mechanisms-such as buckling, local resonances, and auxetism-to generate enhanced isolation properties. This type of structure could help to improve the isolation for machines, transportation, and buildings. First, the static properties of the reference and resonant structures are compared. Dispersion curves are then analysed to describe their periodic dynamic behaviour. An experimental validation carried out on a specially designed test bench is then presented and compared to corresponding finite structure simulation. As a result, huge bandgaps are found for the resonant case and strong isolation properties are also confirmed by the experimental data.
超材料是指具有超越块状材料特性的结构。自20世纪90年代末以来,它们在电磁学、声学和弹性动力学等许多研究领域中受到了越来越多的关注。本文对一种用于隔振的局部共振负泊松比超材料进行了数值和实验研究。所设计的材料结合了不同的机制,如屈曲、局部共振和负泊松比效应,以产生增强的隔振性能。这种类型的结构有助于改善机器、交通运输和建筑物的隔振效果。首先,比较了参考结构和共振结构的静态特性。然后分析色散曲线以描述它们的周期性动态行为。接着介绍了在专门设计的试验台上进行的实验验证,并将其与相应的有限结构模拟进行比较。结果,在共振情况下发现了巨大的带隙,实验数据也证实了其强大的隔振性能。