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Platelet interlocks are the key to toughness and strength in nacre

机译:血小板互锁是珍珠质韧性和强度的关键

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摘要

Nacre, the inner layer of mollusk shells is a composite made of platelets of mineral aragonitic calcium carbonate with a few weight percent organic material sandwiched in between. The organic and nanostructural nuances are often suggested to be the reason for the extreme toughness of nacre. Here we report the presence of interlocks between platelets of nacre from red abalone. We also report and show, using three-dimensional finite element modeling, that interlocks are the key mechanism for the high toughness and strength of nacre. The observed rotation between platelet layers, which were earlier reported as defects of structure, are necessary for the formation of interlocks.
机译:软体动物壳的内层珍珠层是由片状矿物文石碳酸钙制成的复合材料,中间夹有少量重量百分比的有机材料。通常建议有机和纳米结构的细微差别是珍珠母极强韧性的原因。在这里,我们报道了红色鲍鱼珍珠质血小板之间存在互锁。我们还使用三维有限元建模报告并显示,互锁是珍珠母高韧性和强度的关键机制。观察到的血小板层之间的旋转,这早先被报道为结构缺陷,对于形成互锁是必要的。

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