Nanograin–glass dual-phasic, elasto-flexible, fatigue-tolerant, and heat-insulating ceramic sponges at large scales

材料科学 陶瓷 复合材料 脆性 假弹性 微观结构 马氏体
作者
Lei Li,Chao Jia,Ying Liu,Fang Ben,Wenqing Zhu,Xiaoyan Li,Laura–Alena Schaefer,Ziwei Li,Fangshu Zhang,Xuning Feng,Naveed Hussain,Xiaoqin Xi,Dong Wang,Yuanhua Lin,Xiaoding Wei,Hui Wu
出处
期刊:Materials Today [Elsevier BV]
卷期号:54: 72-82 被引量:82
标识
DOI:10.1016/j.mattod.2022.02.007
摘要

Ceramics are considered intrinsically brittle at room temperature, which is mainly attributed to the limited availability of crystallographic slips and pre-existing geometrical flaws. Moreover, the lack of flexibility has severely hindered many high-end applications of ceramic materials. Here, we produce ceramic sponges that are simultaneously ultra-light, elasto-flexible, thermally insulating, and can fully recover from large deformation with a near-zero Poisson's ratio. These spongy materials also possess superb fatigue resistance without the accumulation of damage or structural collapse for 10,000 large-scale compressive or buckling cycles. We demonstrate the exceptional flexibility is enabled by the elastic distortion of nanograin–glassy dual phase and the fiber bulking in open-cell three-dimensional structure. Moreover, these spongy materials possess superior temperature-invariant superelasticity from deep cryogenic temperatures (−196 °C) to high temperature (1500 °C). Our study not only developed mechanically reliable lightweight ceramics for numerous extreme applications, but also provided new theoretical insights into the origin of flexibility in polycrystalline ceramics.
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