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Mechanical properties of nacre constituents and their impact on mechanical performance

机译:珍珠质成分的机械性能及其对机械性能的影响

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摘要

The mechanical properties of nacre constituents from red abalone were investigated. Electron microscopy studies revealed that the tablets are composed of single-crystal aragonite with nanograin inclusions. Both nanoasperities and aragonite bridges are present within the interfaces between the tablets. By means of nanoindentation and axial compression tests, we identified single tablet elastic and inelastic properties. The elastic properties are very similar to those of single-crystal aragonite. However, their strength is higher than previously reported values for aragonite. A finite element model of the interface accounting for nanoasperities and the identified properties revealed that the nanoasperities are strong enough to withstand climbing and resist tablet sliding, at least over the initial stages of deformation. Furthermore, it was observed that the model over-predicts strength and under-predicts ductility. Therefore, we conclude that other interface features must be responsible for the enhanced performance of nacre over its constituents.
机译:研究了红鲍鱼珍珠质成分的力学性能。电子显微镜研究表明,片剂由具有纳米颗粒包裹体的单晶文石组成。片剂之间的界面内都存在纳米粗糙物和文石桥。通过纳米压痕和轴向压缩测试,我们确定了单片的弹性和非弹性性质。弹性特性与单晶文石非常相似。然而,它们的强度高于先前报道的文石值。解释纳米粗糙性和确定特性的界面有限元模型表明,纳米粗糙性足够强,至少在变形的初始阶段能够承受攀爬和抵抗药片滑动。此外,观察到该模型高估了强度而低估了延展性。因此,我们得出结论,其他界面功能必须负责珍珠母在其组成部分上的增强性能。

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