Experimental analysis on nonlinear elastic wave characteristics of metallic origami cylinder

H. Park, J. H. Han, Jinkyu Yang
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Abstract

This paper presents an experimental investigation on the origami patterned cylinder made of Tachi-Miura Polyhedron (TMP) unit cell. The unit cell shows strain-softening behavior under compression load. To analyze the effect of nonlinear behavior on the elastic wave propagation in TMP cylinder, fabrication of metallic origami cylinder and impact test were conducted. The thin metallic structure was fabricated using the vacuum bag method. The pressure was applied evenly to the aluminum facets, which have compliant hinges that behave like torsional springs. The first unit cell of the cylinder structure was connected to the dynamic shaker and the pulse load was applied. To measure the dynamic behavior of unit cells during elastic wave propagation, the stereo pattern recognition (SPR) camera system was employed. The experimental result shows that the compressive wave, induced by impact load, was attenuated due to the nonlinear characteristics of the TMP unit cell. Furthermore, the tensile wave, which emerged later, arrived first on the last unit cell. It means that the tensile wave overtook the compressive wave. The speed of the elastic wave is affected by the stiffness of the structure. Based on the strain-softening behavior of the TMP unit cell, the compressive wave is slower than the tensile wave. It induced the attenuation of compressive impact and overtaking of tensile elastic wave. We can expect that this nonlinear characteristic of the origami-based structure can be applied to the shock mitigation structure.
金属折纸筒非线性弹性波特性实验分析
本文对由Tachi-Miura多面体(TMP)单元格制成的折纸图案圆柱体进行了实验研究。单元胞在压缩荷载作用下表现出应变软化行为。为了分析非线性行为对TMP圆柱体弹性波传播的影响,进行了金属折纸圆柱体的制作和冲击试验。采用真空袋法制备薄金属结构。压力被均匀地施加到铝面,它有顺从的铰链,表现得像扭转弹簧。将圆柱结构的第一个单元格连接到动激振器上,施加脉冲载荷。为了测量弹性波传播过程中单元胞的动态行为,采用立体模式识别(SPR)相机系统。实验结果表明,由于TMP单元胞的非线性特性,冲击载荷诱导的压缩波被衰减。此外,出现较晚的张力波首先到达最后一个单元胞。这意味着拉伸波超过了压缩波。弹性波的速度受结构刚度的影响。基于TMP单元胞的应变软化特性,压缩波比拉伸波慢。它引起了压缩冲击的衰减和拉伸弹性波的超车。我们可以预期,折纸结构的这种非线性特性可以应用于减震结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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