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Microstructure and mechanical properties of fish scales from MegalopsAtlanticus

机译:巨鳞鱼类鱼鳞的显微结构和力学性能

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This work studies the microstructure and mechanical properties of fish scales from Tarpon fish (MegalopsAtlanticus) with cycloid scales. Mechanical properties of the scales were evaluated in uniaxial tension from three different positions along the length of the fish (head, midlength and tail), similarly it was evaluated the effects of dehydration of the material in the mechanical properties, demonstrating an increased stiffness as a function of dehydrationas also reported Garrano et al. for CyprinusCarpio [1]. Microstructural analysis revealed that the scaleis composed by different layers associated with collagen to form a plywood like structure and a top layer associated with hydroxyapatite, as it has just been reported by several authors to different fish species [2, 3, 4]. This combination of collagen and hydroxyapatitelayers allows the fish scaleto have a high penetration resistance [5]. Microstructural analysis also reveals that the scale have a rugged circular concentric pattern on top to provide advantages associated with hydrodynamic, unlike the inner part of the scale that is in contact with the dermis which presents a smooth surface. Thus all these microstructural and mechanical characteristics are used by fish as drag reduction system, mobility and increase protection against predators, which are desirable features in engineering applications through the design of bioinspired materials.
机译:这项工作研究了摆线鳞片的塔彭鱼(MegalopsAtlanticus)的鱼鳞的微观结构和力学性能。在沿着鱼的长度(头,中长度和尾巴)的三个不同位置的单轴张力中评估了鱼鳞的机械性能,类似地,还评估了材料脱水对机械性能的影响,表明其硬度增加了。脱水的功能还报道了Garrano等。对于鲤鱼[1]。微观结构分析表明,鳞屑由与胶原蛋白相关的不同层组成,以形成胶合板状结构和与羟基磷灰石相关的顶层,正如几位作者刚刚报道的对不同鱼类的报道[2、3、4]。胶原蛋白和羟基磷灰石层的这种结合使鱼鳞具有较高的抗渗透性[5]。显微结构分析还显示,该秤的顶部具有凹凸不平的圆形同心圆图案,具有与水动力相关的优势,这与秤的与真皮表面接触的与真皮接触的内部不同。因此,鱼类将所有这些微结构和机械特性用作减阻系统,移动性和增强的防捕食性,这是通过设计生物启发性材料而在工程应用中的理想功能。

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