Murcia Sandra, Lavoie Ellen, Linley Tim, Devaraj Arun, Ossa E Alex, Arola D
Department of Materials Science and Engineering, University of Washington, Seattle, WA, USA.
Molecular Analysis Facility (MAF), MolES, University of Washington, Seattle, WA, USA.
J Mech Behav Biomed Mater. 2017 Sep;73:17-27. doi: 10.1016/j.jmbbm.2016.09.025. Epub 2016 Sep 20.
Fish scales exhibit a unique balance of flexibility, strength and toughness, which is essential to provide protection without encumbering locomotion. Although the mechanical behavior and structure of this natural armor are of recent interest, a comparison of these qualities from scales of different fish species has not been reported. In this investigation the armor of fish with different locomotion, size and protection needs were analyzed. Scales from the Arapaima gigas, the tarpon (Megalops atlanticus) and the carp (Cyprinus carpio) were compared in terms of the stacking sequence of individual plies and their microstructure. The scales were also compared with respect to anatomical position to distinguish site-specific functional differences. Results show that the lamination sequence of plies for the carp and tarpon exhibit a Bouligand structure with relative rotation of 75° between consecutive plies. The arapaima scales exhibit a cross-ply structure, with 90° rotation between adjacent plies. In addition, results indicate that the volume fraction of reinforcement, the number of plies and the variations in thickness with anatomical position are unique amongst the three fish. These characteristics should be considered in evaluations focused on the mechanical behavior.
鱼鳞展现出柔韧性、强度和韧性的独特平衡,这对于在不阻碍运动的情况下提供保护至关重要。尽管这种天然铠甲的力学行为和结构最近受到关注,但尚未有关于不同鱼类鳞片这些特性比较的报道。在本研究中,对具有不同运动方式、大小和保护需求的鱼类铠甲进行了分析。比较了巨骨舌鱼、大海鲢和鲤鱼鳞片的各层堆叠顺序及其微观结构。还根据解剖位置对鳞片进行了比较,以区分特定部位的功能差异。结果表明,鲤鱼和大海鲢鳞片各层的叠层顺序呈现出一种布里渊结构,相邻层之间相对旋转75°。巨骨舌鱼鳞片呈现出一种交叉层结构,相邻层之间旋转90°。此外,结果表明,三种鱼之间增强材料的体积分数、层数以及厚度随解剖位置的变化都是独特的。在侧重于力学行为的评估中应考虑这些特性。