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首页> 外文期刊>Acta biomaterialia >Micro-structure and mechanical properties of the turtle carapace as a biological composite shield
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Micro-structure and mechanical properties of the turtle carapace as a biological composite shield

机译:甲壳生物复合防护罩的微观结构和力学性能

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摘要

Turtle shell is a multi-scale bio-composite in which the components are arranged in various spatial patterns, leading to an unusually strong and durable structure. The keratin-coated dorsal shell, termed the carapace, exhibits a flat bone, sandwich-like structure made up of two exterior cortices enclosing a cancellous interior. This unique structure was developed by nature to protect the reptile from predator attacks by sustaining impact loads and dissipating energy. In the present study we attempt to correlate the micro-scale architecture with the mechanical properties of the carapace sub-regions of the red-eared slider turtle. The microscopic structural features were examined by scanning electron microscopy and micro-computed tomography. Nanoindentation tests were performed under dry and wet conditions on orthogonal anatomical planes to evaluate the elastic modulus and hardness of the various carapace sub-regions. The mineral content was also measured in the different regions of the carapace. Consequently, we discuss the influence of hydration on the carapace sub-regions and the contribution of each sub-region to the overall mechanical resistance of the assemblage.
机译:龟壳是一种多尺度的生物复合材料,其中的成分以各种空间模式排列,从而具有异常坚固和耐用的结构。角蛋白涂层的背壳,称为甲壳,具有扁平的骨头,三明治状结构,由两个外部皮质包围着松散的内部构成。这种独特的结构是自然界开发的,可通过维持冲击负荷和耗散能量来保护爬行动物免受捕食者的袭击。在本研究中,我们试图将微型建筑与红耳滑龟甲壳子区域的机械性能相关联。通过扫描电子显微镜和显微计算机断层扫描检查微观结构特征。在干燥和湿润的条件下,在正交的解剖平面上进行了纳米压痕测试,以评估各个甲壳亚区域的弹性模量和硬度。还测量了甲壳不同区域的矿物质含量。因此,我们讨论了水合对甲壳部分区域的影响以及每个子区域对组件整体机械阻力的影响。

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