缓冲
缓冲垫
材料科学
复合数
复合材料
结构工程
工程类
作者
Zhiqiang Zhuang,Zhihui Qian,Xu Wang,XU Xiao-lin,Boya Chen,Guangsheng Song,Xiangyu Liu,Lei Ren,Luquan Ren
标识
DOI:10.1002/advs.202304947
摘要
Abstract Impacts occur everywhere, and they pose a serious threat to human health and production safety. Flexible materials with efficient cushioning and energy absorption are ideal candidates to provide protection from impacts. Despite the high demand, the cushioning capacity of protective materials is still limited. In this study, an integrated bionic strategy is proposed, and a bioinspired structural composite material with highly cushioning performance is developed on the basis of this strategy. The results demonstrated that the integrated bionic material, an S‐spider web‐foam, has excellent energy storage and dissipation as well as cushioning performance. Under impact loading, S‐spider web‐foam can reduce peak impact forces by a factor of 3.5 times better than silicone foam, achieving unprecedented cushioning performance. The results of this study deepen the understanding of flexible cushioning materials and may provide new strategies and inspiration for the preparation of high‐performance flexible cushioning materials.
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