Kirigami sheets in fluid flow

IF 4.3 3区 工程技术 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
A.G. Carleton, Y. Modarres-Sadeghi
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引用次数: 0

Abstract

Kirigami patterned materials have found several applications in recent years due to their ability to assume complicated shapes and exhibit emergent physical properties when exposed to external forces. Consisting of an array of cuts in a thin material, fabrication of these patterns can be quite simple. Here we show that when they are placed in fluid flow, kirigami cut sheets with various patterns produce a variety of flow patterns in the wake. Through several sets of experiments, we show that kirigami sheets placed in flow can undergo static or dynamic flow-induced instabilities as a result of which they can buckle or undergo limit cycle oscillations, or they can remain stable while undergoing very large elongations. These structural responses produce several different types of fluid patterns in the wake. We show that vortices both at small scales (scales comparable with the size of the individual kirigami cuts) and large scale (scales comparable with the size of the sheet) are formed in the wake of kirigami sheets. We also show that jets of different sizes can be formed and directed passively using kirigami sheets. These results show the potential of kirigami sheets for passive flow control.

Abstract Image

流体流动中的叽里纸片
近年来,"桐纸 "图案材料已被广泛应用于多个领域,因为它们能够呈现出复杂的形状,并在受到外力作用时表现出新的物理特性。这些图案由薄材料上的切割阵列组成,制作起来非常简单。在这里,我们展示了当它们被置于流体流动中时,具有各种图案的气泡纸切割片会在尾流中产生各种流动图案。通过几组实验,我们表明,置于流动中的叽里格米薄片会发生静态或动态的流动诱导不稳定性,因此它们会发生弯曲或极限周期振荡,或者在发生非常大的伸长时保持稳定。这些结构反应会在尾流中产生几种不同类型的流体形态。我们的研究表明,在气泡片的尾流中会形成小尺度(与单个气泡片切口大小相当的尺度)和大尺度(与气泡片大小相当的尺度)的旋涡。我们还表明,不同大小的喷流可以利用叽里纸片被动地形成和引导。这些结果表明了气泡片在被动流控制方面的潜力。
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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来源期刊
Extreme Mechanics Letters
Extreme Mechanics Letters Engineering-Mechanics of Materials
CiteScore
9.20
自引率
4.30%
发文量
179
审稿时长
45 days
期刊介绍: Extreme Mechanics Letters (EML) enables rapid communication of research that highlights the role of mechanics in multi-disciplinary areas across materials science, physics, chemistry, biology, medicine and engineering. Emphasis is on the impact, depth and originality of new concepts, methods and observations at the forefront of applied sciences.
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