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Microstructural and geometric influences in the protective scales of Atractosteus spatula

机译:对白术保护刮刀的微观结构和几何影响

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摘要

Atractosteus spatula has been described as a living fossil (having existed for 100 Myr), retaining morphological characteristics of early ancestors such as the ability to breathe air and survive above water for hours. Its highly effective armour consists of ganoid scales. We analyse the protective function of the scales and identify key features which lead to their resistance to failure. Microstructural features include: a twisted cross-plied mineral arrangement that inhibits crack propagation in the external ganoine layer, mineral crystals that deflect cracks in the bony region in order to activate the strength of mineralized collagen fibrils, and saw-tooth ridges along the interface between the two scale layers which direct cracks away from the intrinsically weak interface. The macroscale geometry is additionally evaluated and it is shown that the scales retain full coverage in spite of minimal overlap between adjacent scales while conforming to physiologically required strain and maintaining flexibility via a process in which adjacent rows of scales slide and concurrently reorient.
机译:白术铲被描述为一种活化石(已有100 Myr的存在),保留了早期祖先的形态特征,如呼吸空气和在水上存活数小时的能力。其高效的装甲由类鳞片组成。我们分析了秤的保护功能,并确定了导致其抗故障能力的关键特征。微观结构特征包括:扭曲的交叉折叠矿物排列,可抑制外部甘氨酸层中的裂纹扩展;使骨骼区域中的裂纹偏转的矿物晶体,以激活矿化的胶原蛋白原纤维的强度;以及沿两者之间的界面形成的锯齿状脊两层氧化皮将裂纹从本征薄弱的界面引导开。此外,还对宏观尺度的几何形状进行了评估,结果表明,尽管相邻尺度之间的重叠程度最小,但尺度仍保留了全部覆盖范围,同时符合生理要求的应变,并通过相邻行尺度滑动并同时重新定向的过程保持了柔韧性。

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