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Deformation and Fracture Mechanisms of Bone and Nacre

机译:骨和珍珠层的变形和断裂机制

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Bone and nacre are the most-known biological hard tissues to materials researchers. Although highly mineralized, both bone and nacre are amazingly-tough and exhibit remarkable inelasticity, properties that are still beyond the reach of many modern ceramic materials. Very interestingly, the two hard tissues seem to have adopted totally different structural strategies for achieving mechanical robustness. Starting from a true nanocomposite of the mineralized collagen fibril and following up to seven levels of hierarchical organization, bone is built on a structure with extreme complexity. In contrast, nacre possesses a structure of surprising simplicity. Polygonal mineral tablets of micrometer size are carefully cemented together into a macroscopic wonder. A comparative analysis of the structure-property relations in bone and nacre helps us to unveil the underlying mechanisms of this puzzling phenomenon. In this review, we critically compare the various levels of structures and their mechanical contributions between bone and nacre, with a focus on inelasticity and the toughening process. We demonstrate that, although nacre and bone differ from each other in many aspects, they have adopted very similar deformation and toughening mechanisms.
机译:骨和珍珠层是材料研究人员最著名的生物硬组织。尽管矿物质和矿物质高度矿化,但它们的坚韧度极高,并显示出显着的非弹性,这些特性仍然是许多现代陶瓷材料无法企及的。非常有趣的是,两个硬组织似乎采用了完全不同的结构策略来实现机械强度。从矿物质化胶原蛋白纤维的真正纳米复合材料开始,直至达到七个层次的组织结构,骨骼建立在极其复杂的结构上。相反,珍珠母具有令人惊讶的简单结构。将微米级的多边形矿物片小心地粘合在一起,形成一个宏观奇迹。对骨骼和珍珠质的结构-属性关系的比较分析有助于我们揭示这种令人困惑的现象的潜在机制。在这篇综述中,我们重点比较了骨和珍珠质之间的各种结构水平及其机械作用,重点是无弹性和增韧过程。我们证明,尽管珍珠质和骨骼在许多方面彼此不同,但它们采用了非常相似的变形和增韧机制。

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