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Non-linear elastic response of layered structures, alternating pentamode lattices and confinement plates

机译:层状结构,交替的五模晶格和约束板的非线性弹性响应

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摘要

We study the mechanical response under large elastic strains of pentamode layers confined between stiffening plates, and the potential use of such systems as novel seismic isolation and impact protection devices. We analyze pentamode materials that exhibit three soft deformation modes in the infinitesimal stretching regime that follow by the presence of perfectly hinged connections between the rods. The response of these metamaterials under large elastic strains is characterized by an elastic-stiffening effect in terms of the lateral force-displacement response, which increases in the presence of rigid connections and decreases by increasing the number of layers. Our results lead us to conclude that the analyzed pentamode metamaterials can be effectively employed as novel, performance-based devices for seismic and mechanical vibration protection, by designing the lattice geometry, the stiffness properties of the joints, and the lamination scheme in a suitable manner and as a function of the operating conditions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们研究了限制在加劲板之间的五模式层在大弹性应变下的机械响应,以及潜在的诸如新型地震隔离和冲击保护装置等系统的使用。我们分析了五模式材料,这些材料在极小的拉伸状态下表现出三种软变形模式,随后在杆之间存在完美的铰链连接。这些超材料在大的弹性应变下的响应的特征在于,在横向力-位移响应方面具有弹性加劲作用,这种作用在存在刚性连接时会增加,而在增加层数时会减少。我们的结果使我们得出结论,通过以合适的方式设计晶格几何形状,接头的刚度特性和层压方案,可以将分析的五模超材料有效地用作基于性能的新型装置,用于地震和机械振动防护并取决于运行条件。 (C)2016 Elsevier Ltd.保留所有权利。

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