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Analytical modeling and design of negative stiffness honeycombs

机译:负刚度蜂窝的分析建模与设计

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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.
机译:与传统的蜂窝结构相比,负刚度蜂窝状(NSH)具有多种优点。 这些优点包括可恢复的弹性屈曲,减震和振动隔离。 因此,NSHS在声波引导,形状变形,冲击保护装置和机器人夹具的设计等应用中具有很大的潜力。 在本文中,我们介绍了由在蜂窝结构中组装的负刚度梁组成的超材料的设计方法。 基于分析结果,我们的方法允许使用预定的屈曲序列设计NSH Mesostures。 基于我们的算法设计了NSH原型,并使用带有尼龙丝的3D打印机制造。 通过执行位移控制的压缩力测量来实验验证我们的方法的有效性。 我们的方法能够设计具有所需的力位移特性的NSH Mesostructure。

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