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首页> 外文期刊>Journal of Materials Research >Nanomechanical properties of nacre
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Nanomechanical properties of nacre

机译:珍珠母的纳米力学性能

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Nacre, the inner iridescent layer of seashells is a model biomimetic system composed of 95 percent of inorganic (aragonite) phase and 5 percent of organic phase. Nacre exhibits an interlocked layered "brick and mortar" structure where the bricks are made up of aragonitic calcium carbonate and mortar is an organic phase. Here, we report the role of indentation load and penetration depth on measurement of nanomechanical properties of nacre. A range of loads from 10 mu N to 10,000 mu N were applied to obtain the response from different depths of nacre. The values of hardness and elastic modulus decrease with increasing load (i.e., increase in penetration depth). The variation in these values is significant at lower loads and decreases with increase in indentation load. From our results, it appears that the nanoindentation tests done at lower loads are highly influenced by micro and nanostructure in nacre. The indentation experiments performed at low loads indicate an elastic modulus of about 15 GPa for the organic phase. The low load, low penetration experiments appear to be better indicators of nanomechanical behavior. Also, we have observed a step-like behavior in the load-displacement curves at high load indentations on nacre. These features are attributed to the organic layer between the aragonite platelets. The indentation tests with penetration depths more than appox 250-300 nm often disrupt the organic layer and the behavior is not recovered in the unloading part of the curve. The microarchitecture and the composition of nacre contribute to the decrease in hardness values with increasing depth along with the indentation size effects.
机译:贝壳的内部虹彩层珍珠层是一种仿生模型系统,由95%的无机(文石)相和5%的有机相组成。 Nacre表现出互锁的分层“砖和砂浆”结构,其中的砖是由碳酸钙碳酸钙制成的,砂浆是有机相。在这里,我们报告压痕载荷和穿透深度在珍珠质纳米力学性能测量中的作用。施加了10到10,000牛顿的载荷范围,以获得来自不同珍珠层深度的响应。硬度和弹性模量的值随着载荷的增加(即,渗透深度的增加)而降低。这些值的变化在较低的载荷下很明显,并且随着压痕载荷的增加而减小。从我们的结果来看,似乎在较低载荷下进行的纳米压痕测试受珍珠质中微结构和纳米结构的影响很大。在低载荷下进行的压痕实验表明有机相的弹性模量约为15 GPa。低负荷,低渗透率的实验似乎是纳米力学行为的更好指标。此外,我们在珍珠质上的高载荷压痕下,在载荷-位移曲线中观察到了阶梯状行为。这些特征归因于文石血小板之间的有机层。穿透深度超过约250-300 nm的压痕测试通常会破坏有机层,并且在曲线的卸载部分无法恢复其行为。微结构和珍珠母的组成会导致硬度值随深度增加以及凹痕尺寸效应而降低。

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