Transparent and Soft Crack‐Resistant Bouligand Elastomers Inspired by Fish Scales

弹性体 材料科学 复合材料 刚度
作者
Jingheng Shu,Qiancheng Teng,Hao Zhang,Jinrong Wu,Zhan Liu
出处
期刊:Macromolecular Rapid Communications [Wiley]
卷期号:45 (3): e2300526-e2300526
标识
DOI:10.1002/marc.202300526
摘要

Abstract Nature with its abundant source offers numerous inspirations for structural and engineering designs. The oriented membranes stacked with bouligand structures in the fish scales show an outstanding combination of high strength and crack resistance. Although the applications of hard biomimetic composites are reported, the structures are rarely utilized in soft materials. Inspired by the scales of various fishes, electrospun membranes are used and stacked to fabricate bouligand elastomers, including orthogonal‐plywood, single‐bouligand, and double‐bouligand structures. The effects of different structures on the properties of elastomers are systematically investigated and possible mechanism is explained using finite element analysis (FEA). The stiffness and fatigue characteristics of these biomimetic elastomers with the above structures are improved compared with the original membranes, especially the elastomers with a single‐bouligand structure, which can undergo 5 000 cycles at a maximum strain of 35% without complete failure. The crack only propagates to half of the width of the elastomer with remaining strength of 50% of its original strength. Moreover, the mechanical performance can be adjusted by regulating the proportion of the components. The excellent crack‐resistant properties and transparency promote its various potential applications.
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