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On the mechanical response of multilayered pentamode lattices equipped with hinged and rigid nodes

机译:关于带有铰接和刚性节点的多层五模晶格的机械响应

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Purpose This paper aims to review recent literature results on the mechanical response of confined pentamode structures behaving either in the stretching-dominated or the bending-dominated regimes. Design/methodology/approach The analyzed structures consist of multilayer systems formed by pentamode lattices alternated with stiffening plates and are equipped with rigid or hinged connections. Findings It is shown that such structures are able to carry unidirectional compressive loads with sufficiently high stiffness, while showing markedly low stiffness against shear loads. In particular, their shear stiffness may approach zero in the stretching-dominated regime. Originality/value The presented results highlight the high engineering potential of laminated pentamode metamaterials as novel isolation devices to be used for the protection of buildings against shear waves.
机译:目的本文旨在回顾有关受限五态结构在拉伸为主或弯曲为主状态下的力学响应的最新文献结果。设计/方法/方法分析的结构由多层系统组成,该多层系统由五种晶格和加强板交替形成,并配备有刚性或铰链连接。结果表明,这种结构能够承受具有足够高刚度的单向压缩载荷,同时显示出相对于剪切载荷而言明显较低的刚度。特别地,它们的剪切刚度在以拉伸为主的状态下可以接近零。原创性/价值提出的结果突出了层压五模式超材料作为新型隔离装置的高工程潜力,该隔离装置可用于保护建筑物免受剪切波的侵害。

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