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受乌贼骨启发的多孔陶瓷材料的三维打印

Three-Dimensional Printing of Cuttlebone-Inspired Porous Ceramic Materials.

作者信息

Mao Anran, Zhou Shitong, Hong Yinglun, Osborn Ollie, Saiz Eduardo, Bai Hao

机构信息

State Key Laboratory of Chemical Engineering, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou, Zhejiang 310027, People's Republic of China.

Centre of Advanced Structural Ceramics, Department of Materials, Imperial College London, London SW7 2AZ, United Kingdom.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 7;16(31):41202-41210. doi: 10.1021/acsami.4c10162. Epub 2024 Jul 26.

Abstract

Lightweight and strong ceramic materials are attractive for tissue engineering, aerospace, armor systems, and many high-temperature applications. Cuttlebone, primarily composed of bioceramics, features a unique S-shaped wall structure that contributes significantly to its remarkable mechanical properties. Here, we explore the hierarchical structure and components of the cuttlebone and reveal the high ceramic content in S-shaped walls. Inspired by the design of the cuttlebone, we developed a high ceramic loading slurry for three-dimensional printing cuttlebone-like structures. As shown in the compression test, the fabricated bioinspired ceramics exhibit excellent mechanical properties and can withstand 1.07 million times their own weight, outperforming traditional ceramic foams. The specific strength and modulus are 59.5 and 785.6 MPa/(g cm), 9 and 36 times that of the natural cuttlebone. The failure mechanisms are also systematically studied on the basis of tuning the structural parameters. These findings provide effective solutions and inspiration in fabricating high-performance ceramic structural materials.

摘要

轻质且坚固的陶瓷材料在组织工程、航空航天、装甲系统以及许多高温应用领域具有吸引力。乌贼骨主要由生物陶瓷组成,具有独特的S形壁结构,这对其卓越的机械性能有显著贡献。在此,我们探究了乌贼骨的层级结构和组成部分,并揭示了S形壁中高陶瓷含量。受乌贼骨设计的启发,我们开发了一种用于三维打印类乌贼骨结构的高陶瓷负载浆料。如压缩试验所示,所制备的仿生陶瓷表现出优异的机械性能,能够承受自身重量107万倍的压力,优于传统陶瓷泡沫。其比强度和模量分别为59.5和785.6 MPa/(g·cm),是天然乌贼骨的9倍和36倍。还在调整结构参数的基础上系统研究了失效机制。这些发现为制造高性能陶瓷结构材料提供了有效的解决方案和灵感。

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