A convex-deformable sandwich panel for mobile devices

IF 3.5 3区 材料科学 Q1 ENGINEERING, MECHANICAL
Y. Jeong, Eun-Byeol Park, K. Kang
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引用次数: 3

Abstract

Panels with monolithic auxetic micro-architectures are capable of bending into convex shapes. However, the thickness of panels with these micro-architectures (such as re-entrant trusses) is currently under a few millimeters; thus, they are too compliant for structural applications. Moreover, their interior spaces are commonly divided into very small cells to accommodate solid parts. Therefore, a novel sandwich panel composed of stainless steel face sheets with a two-dimensional auxetic pattern and a 3D-printed polymer truss core is proposed as a kinematically and statically determinate structure. This structure allows for a three-dimensional convex deformation under buckling and bending loads. The sandwich panel exhibits high structural robustness and can accommodate thick solid parts within the core. Even when packed with irregular solid chips in the core, a square panel with a 100 mm side length and 4 mm thickness can be deformed up to a minimum curvature of 83.3 mm under extreme five-point bending. Thus, this panel is expected to be used as the main structure for mobile devices, designed for convenient carrying in typical jean’s back and thigh pockets.
一种用于移动设备的凸形可变形夹芯板
具有单片微结构的面板能够弯曲成凸起的形状。然而,具有这些微结构的面板(如凹入式桁架)的厚度目前不到几毫米;因此,它们对于结构应用来说过于顺从。此外,它们的内部空间通常被划分为非常小的单元,以容纳固体部件。因此,提出了一种由不锈钢面板和三维打印聚合物特拉斯芯组成的新型夹层板,作为动、静定结构。这种结构允许在屈曲和弯曲载荷下产生三维凸变形。夹层板具有高的结构坚固性,并且可以容纳芯内的厚固体部件。即使在芯体中填充有不规则的固体碎屑,边长为100 mm、厚度为4 mm的方形面板在极端五点弯曲下也可以变形至83.3 mm的最小曲率。因此,该面板有望用作移动设备的主要结构,设计用于在典型的牛仔裤背部和大腿口袋中方便携带。
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
Journal of Sandwich Structures & Materials
Journal of Sandwich Structures & Materials 工程技术-材料科学:表征与测试
CiteScore
9.60
自引率
2.60%
发文量
49
审稿时长
7 months
期刊介绍: The Journal of Sandwich Structures and Materials is an international peer reviewed journal that provides a means of communication to fellow engineers and scientists by providing an archival record of developments in the science, technology, and professional practices of sandwich construction throughout the world. This journal is a member of the Committee on Publication Ethics (COPE).
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