蜂巢
刚度
结构工程
变形
材料科学
蜂窝结构
流离失所(心理学)
隔振
夹持器
振动
屈曲
超材料
声学
机械工程
计算机科学
复合材料
工程类
人工智能
物理
光电子学
心理治疗师
心理学
作者
Altay Zhakatayev,Zhanat Kappassov,Hüseyin Atakan Varol
标识
DOI:10.1088/1361-665x/ab773a
摘要
Negative stiffness honeycombs (NSHs) have multiple advantages compared to traditional honeycomb structures. These advantages include recoverable elastic buckling, shock absorption, and vibration isolation. As a result, NSHs have great potential in applications such as acoustic wave guiding, shape morphing, design of impact-protection devices and robotic grippers. In this paper, we present a design methodology for metamaterial consisting of negative stiffness beams assembled in a honeycomb structure. Based on analytical results, our methodology allows designing NSH mesostructures with predetermined buckling sequence. An NSH prototype was designed based on our algorithm and fabricated using a 3D printer with a nylon filament. The validity of our approach was experimentally verified by performing displacement controlled compression force measurements. Our methodology gives the ability to design NSH mesostructures with desired force–displacement characteristics.
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