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首页> 外文期刊>Acta biomaterialia >Mapping nanomechanical properties of freshly grown, native, interlamellar organic sheets on flat pearl nacre
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Mapping nanomechanical properties of freshly grown, native, interlamellar organic sheets on flat pearl nacre

机译:在扁平珍珠质珍珠质上绘制新鲜生长的原生层间有机片的纳米力学性能图

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We imaged surfaces of freshly grown flat pearl nacre (Haliotis tuberculata) in different stages of growth in seawater using an atomic force microscope (AFM). Characteristic mineral phases of nacre, such as aragonitic stacks of coins, as well as the associated organic sheets, could be detected. Apart from imaging, the acquisition of force volumes on freshly grown organic surface areas on flat pearl nacre was conducted with the AFM. The evaluation of the force volumes with the Hertz-Sneddon model resulted in Young's moduli in the MPa range. The presented values are considerably smaller than values previously determined from macroscopic tensile tests. This might reflect the anisotropy of the organic nacre layers.
机译:我们使用原子力显微镜(AFM)对海水中不同生长阶段的新鲜珍珠扁珍珠质(Haliotis tuberculata)的表面成像。可以检测到珍珠质的特征性矿物相,例如硬币的人造石叠层以及相关的有机薄片。除成像外,还使用原子力显微镜对扁平珍珠质珍珠质上新鲜生长的有机表面区域上的力进行采集。用Hertz-Sneddon模型评估力的大小会导致在MPa范围内的杨氏模量。给出的值明显小于先前从宏观拉伸试验中确定的值。这可能反映了有机珍珠层的各向异性。

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