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Nacre from mollusk shells: A model for high-performance structural materials

机译:软体动物贝壳中的珍珠母:高性能结构材料的模型

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Nacre is the iridescent layer found inside a large number of mollusk shells. This natural composite has a very high mineral content, which makes it hard and stiff. However it is the toughness of nacre which is the most impressive: it is three orders of magnitude tougher than the mineral it is made of. No manmade composite material can boast such amplification in toughness, and for this reason nacre has become a biomimetic model material. The mineral in nacre comes in the form of microscopic polygonal tablets, which have the ability to 'slide' onone another in large numbers when the material is loaded in tension. This key mechanism makes nacre a quasi-ductile material, which in turn greatly increases its toughness and makes it damage tolerant. Numerous 'artificial nacres' were developed in the past but none of them can truly duplicate the remarkable mechanism of tablet sliding. In this work selected structural features of nacre were implemented in a PMMA-based composite, which for the first time could replicate the collective tablet sliding mechanism. This material demonstrates that the powerful toughening mechanism operating in natural nacre can be duplicated and harnessed in engineering materials.
机译:珍珠层是在大量软体动物壳内发现的虹彩层。这种天然复合材料具有很高的矿物质含量,使其坚硬。然而,最令人印象深刻的是珍珠母的韧性:它比制成的矿物要坚硬三个数量级。人造复合材料在韧性方面无可匹敌,因此珍珠母已成为仿生模型材料。珍珠质中的矿物质以微观的多边形片剂的形式出现,当材料受拉时,它们具有大量“彼此”滑动的能力。该关键机制使珍珠母为准延性材料,继而极大地提高了其韧性并使其具有耐损伤性。过去开发了许多“人造珍珠层”,但没有一个能真正复制药片滑动的显着机理。在这项工作中,珍珠母的选定结构特征在基于PMMA的复合材料中得以实现,这首次可以复制集体片剂的滑动机制。这种材料表明,天然珍珠层中强大的增韧机制可以在工程材料中复制和利用。

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