辅助
消散
材料科学
撑杆
结构工程
超材料
屈曲
参数统计
复合材料
变形机理
变形(气象学)
工程类
微观结构
数学
物理
统计
热力学
光电子学
作者
Yi Zhang,Xin Ren,Xiang Yu Zhang,Ting Huang,Long Sun,Yi Min Xie
标识
DOI:10.1016/j.engstruct.2021.113223
摘要
Auxetic materials could exhibit desirable mechanical properties, e.g., fracture resistance, shear resistance and energy dissipation due to their unique deformation characteristics. However, the seismic performance of auxetics in disaster prevention and mitigation of building structures is rarely studied. In this study, a novel perforated negative Poisson’s ratio core buckling-restrained brace (NP-BRB) was designed and manufactured for exploring the hysteretic performance of auxetic metamaterials under cyclic load. Experiments and verified numerical simulations were conducted to investigate the effects of porosity and section weakening rate on the seismic performance. The results show that the NP-BRB has stable hysteretic curves and low compression strength adjustment factor. In addition, the parametric analysis indicated that the energy dissipation capacity of NP-BRB with relatively large section weakening rate could be improved due to auxetic behavior when the average strain exceeds 1%. These findings are beneficial to the applications of auxetic metamaterials in damping devices for mitigating seismic effects.
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