Jiang Shan, Liu Jianpeng, Xiong Wennan, Yang Zhaoxi, Yin Liting, Li Kan, Huang YongAn
State Key Laboratory of Digital Manufacturing Equipment and Technology, Huazhong University of Science and Technology, Wuhan, 430074, China.
Flexible Electronics Research Center, Huazhong University of Science and Technology, Wuhan, 430074, China.
Adv Mater. 2022 Aug;34(31):e2204091. doi: 10.1002/adma.202204091. Epub 2022 Jul 3.
A majority of soft-body creatures evolve armor or shells to protect themselves. Similar protection demand is for flexible electronics working in complex environments. Existing works mainly focus on improving the sensing capabilities such as electronic skin (E-skin). Inspired by snakeskin, a novel electronic armor (E-armor) is proposed, which not only possesses mechanical flexibility and electronic functions similar to E-skin, but is also able to protect itself and the underlying soft body from external physical damage. The geometry of the kirigami mechanical metamaterial (Kiri-MM) ensures auxetic stretchability and meanwhile large areal coverage for sufficient protection. Moreover, to suppress the inherent but undesired out-of-plane buckling of conventional Kiri-MMs for conformal applications, soft hinges are used to form a distinct soft (hinges)-rigid (tiles) configuration. Analytical, computational, and experimental studies of the mechanical behaviors of the soft-hinge Kiri-MM E-armor demonstrate the merits of this design, i.e., stretchability, conformability, and protectability, as applied to flexible electronics. Deploying a conductive soft material at the hinges enables facile wiring strategies for large-scale circuit arrays. Functional E-armor systems for controllable display and sensing purposes provide simple examples of a wide spectrum of applications of this concept.
大多数软体生物会进化出铠甲或外壳来保护自己。在复杂环境中工作的柔性电子产品也有类似的保护需求。现有工作主要集中在提高诸如电子皮肤(E-skin)等的传感能力上。受蛇皮启发,提出了一种新型电子铠甲(E-armor),它不仅具有与电子皮肤相似的机械柔韧性和电子功能,还能够保护自身及下面的软体免受外部物理损伤。kirigami机械超材料(Kiri-MM)的几何形状确保了负泊松比拉伸性,同时具有大面积覆盖以提供充分保护。此外,为了抑制传统Kiri-MM在共形应用中固有的但不期望的面外屈曲,使用软铰链形成独特的软(铰链)-硬(薄片)结构。对软铰链Kiri-MM E-铠甲的力学行为进行的分析、计算和实验研究证明了这种设计在应用于柔性电子产品时的优点,即拉伸性、贴合性和保护性。在铰链处部署导电软材料可为大规模电路阵列实现简便的布线策略。用于可控显示和传感目的的功能性E-铠甲系统为这一概念的广泛应用提供了简单示例。