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Mechanical Principles of Biological Nanocomposites

机译:生物纳米复合材料的力学原理

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摘要

Biological nanocomposites, such as bone, tooth, shell, and wood, exhibit exceptional mechanical properties. Much recent effort has been directed at exploring the basic mechanical principles behind the microstructures of these natural materials to provide guidelines for the development of novel man-made nanocomposites. This article reviews some of the recent studies on mechanical properties of biological nanocomposites, including their stiffness, strength, toughness, interface properties, and elastic stability. The discussion is focused on the mechanical principles of biological nanocomposites, including the generic nanostructure of hard-mineral crystals embedded in a soft protein matrix, the flaw-tolerant design of the hard phase, the role of the soft matrix, the hybrid interface between protein and mineral, and the structural hierarchy. The review concludes with some discussion of and outlook on the development of biomimicking synthetic materials guided by the principles found in biological nanocomposites.
机译:生物纳米复合材料,例如骨骼,牙齿,外壳和木材,表现出卓越的机械性能。最近的许多努力都致力于探索这些天然材料的微观结构背后的基本机械原理,从而为开发新型人造纳米复合材料提供指导。本文回顾了有关生物纳米复合材料力学性能的一些最新研究,包括其刚度,强度,韧性,界面性能和弹性稳定性。讨论的重点是生物纳米复合材料的力学原理,包括嵌入软蛋白基质中的硬矿物晶体的一般纳米结构,硬相的耐缺陷设计,软基质的作用,蛋白质之间的杂化界面和矿物,以及结构层次。综述以在生物纳米复合材料中发现的原理为指导,对仿生物合成材料的发展进行了一些讨论和展望。

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