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On flaw tolerance of nacre: a theoretical study

机译:珍珠层的耐缺陷性:理论研究

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摘要

As a natural composite, nacre has an elegant staggered ‘brick-and-mortar’ microstructure consisting of mineral platelets glued by organic macromolecules, which endows the material with superior mechanical properties to achieve its biological functions. In this paper, a microstructure-based crack-bridging model is employed to investigate how the strength of nacre is affected by pre-existing structural defects. Our analysis demonstrates that owing to its special microstructure and the toughening effect of platelets, nacre has a superior flaw-tolerance feature. The maximal crack size that does not evidently reduce the tensile strength of nacre is up to tens of micrometres, about three orders higher than that of pure aragonite. Through dimensional analysis, a non-dimensional parameter is proposed to quantify the flaw-tolerance ability of nacreous materials in a wide range of structural parameters. This study provides us some inspirations for optimal design of advanced biomimetic composites.
机译:珍珠母作为天然复合材料,具有优雅的交错“砖瓦房”微结构,该结构由矿物薄片和有机大分子胶粘而成,这赋予该材料以优异的机械性能,以实现其生物学功能。在本文中,基于微观结构的裂纹桥接模型被用来研究珍珠层的强度如何受到预先存在的结构缺陷的影响。我们的分析表明,珍珠母由于其特殊的微观结构和血小板的增韧作用,具有卓越的耐缺损性。不会明显降低珍珠质抗张强度的最大裂纹尺寸高达数十微米,比纯文石高约三倍。通过尺寸分析,提出了一种无量纲的参数,可以量化多种结构参数下珍珠质材料的耐缺陷能力。这项研究为高级仿生复合材料的优化设计提供了一些启示。

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