多孔性
材料科学
微观结构
晶界
威布尔分布
威布尔模量
抗压强度
模数
陶瓷
复合材料
统计
数学
作者
Hui Yu,Jianlin Li,Jianbao Li,Yongjun Chen,Xue Hou,Shuaifeng Chen,Haotian Yang
标识
DOI:10.1016/j.matdes.2019.107844
摘要
Multibiological multiscale biomimetic design is a novel bionic idea that involves multi-mechanisms. Porous ceramics with a sea urchin stereom structure on a micrometre scale and a nacre mineral bridge structure on a submicron scale have been fabricated via organic foam impregnation and controlled crystallisation. The microstructure and mechanical properties of biomimetic ceramics are, respectively, characterised using scanning electron microscopy and universal testing machine. Moreover, the porosity, reliability and grain boundary stress of biomimetic ceramics are calculated via Archimedes method, Weibull theory and finite element method, respectively. Results show that the ceramic produced in this work has a porosity of 88.16% and an average pore size of 284.65 μm. Mineral bridges of Al2TiO5 with a thickness of 30–230 nm are widely and randomly distributed in the grain boundary glass phase of Al2O3 and improved the compressive strength (2.32 MPa) and Weibull modulus (7.85) of ceramics by the multi-mechanisms of crack deflection, reducing maximum stress and homogenising stress on the grain boundary. These investigations would be of great value to the design and synthesis of novel biomimetic materials.
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