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Microstructure, elastic properties and deformation mechanisms of horn keratin.

机译:喇叭角蛋白的微观结构,弹性性能和变形机制。

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摘要

The structure and mechanical properties of the horns from a desert bighorn sheep, Ovis canadensis, were examined. Horns must be strong and durable as they are subjected to extreme loading impacts, making them superior structural materials. Horns are composed of alpha-keratin, a fibrous, structural protein found in hair, nails, claws and hooves. Horns have a lamellar structure (2-5microm in thickness) stacked in the radial direction with tubules (approximately 40x100microm in diameter) dispersed between the lamellae, extending along the length of the horn in the growth direction. Compression and bending tests were conducted in both rehydrated and ambient dried conditions. The yield strength and elastic modulus are anisotropic and are correlated with the orientation of the tubules. Rehydrated samples showed significant loss of strength and modulus. Microscopy of fractured samples revealed several toughening mechanisms: delamination and ligament bridging in bending and delamination and microbuckling of the lamellae in compression.
机译:检查了来自沙漠大角羊,卵巢的角的结构和机械性能。喇叭必须坚固且耐用,因为它们受到极端负载影响,使其成为优越的结构材料。角由α-角蛋白组成,纤维状,结构蛋白质,在头发,指甲,爪子和蹄中。喇叭具有在径向方向上堆叠在径向方向上的层状结构(2-5microm,直径约40x100microm)分散在薄片之间,沿着喇叭的长度延伸在生长方向上。在再水化和环境干燥的条件下进行压缩和弯曲试验。屈服强度和弹性模量是各向异性的并且与小管的取向相关。再水化样品显示出显着的强度和模量损失。裂缝样品的显微镜显示出几种增韧机制:分层和韧带桥接弯曲和分层和薄片压缩中的薄片。

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