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A nonmineralized approach to abrasion-resistant biomaterials

机译:一种非矿化的抗磨生物材料方法

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摘要

The tooth-like mouthparts of some animals consist of biomacromolecular scaffolds with few mineral components, making them intriguing paradigms of biostructural materials. In this study, the abrasion resistance of the jaws of one such animal, the bloodworm Glycera dibranchiata, has been evaluated by nanoindentation, nanoscratching, and wear testing. The hardest, stiffest, and most abrasion-resistant materials are found within a thin (<3 μm) surface layer near the jaw tip and a thicker (10–20 μm) subsurface layer, both rich in unmineralized Cu. These results are consistent with the supposition that Cu ions are involved in the formation of intermolecular coordination complexes between proteins, creating a highly cross-linked molecular network. The intervening layer contains aligned atacamite [Cu2(OH)3Cl] fibers and exhibits hardness and stiffness (transverse to the alignment direction) that are only slightly higher than those of the bulk material but lower than those of the two Cu-rich layers. Furthermore, the atacamite-containing layer is the least abrasion-resistant, by a factor of ≈3, even relative to the bulk material. These observations are broadly consistent with the behavior of engineering polymer composites with hard fiber or particulate reinforcements. The alignment of fibers parallel to the jaw surface, and the fiber proximity to the surface, are both suggestive of a natural adaptation to enhance bending stiffness and strength rather than to endow the surface regions with enhanced abrasion resistance.
机译:一些动物的牙齿状口器由几乎没有矿物质成分的生物大分子支架组成,使它们成为生物结构材料的典范。在这项研究中,已经通过纳米压痕,纳米划痕和磨损测试评估了一种这样的动物(蠕虫Glycera dibranchiata)的颌骨的耐磨性。在颚尖附近的薄(<3μm)表层和较厚(10–20μm)的次表层中都发现了最坚硬,最坚硬和最耐磨的材料,它们都富含未矿化的Cu。这些结果与铜离子参与蛋白质之间的分子间配位络合物的形成并建立高度交联的分子网络的假设相一致。中间层包含对齐的方解石[Cu2(OH)3Cl]纤维,其硬度和刚度(垂直于对齐方向)仅略高于块状材料的硬度和刚度,但低于两个富铜层的硬度和刚度。此外,即使是相对于块状材料,含金刚砂层的耐磨性最低,约为≈3。这些观察结果与具有硬纤维或颗粒增强剂的工程聚合物复合材料的行为大致相符。纤维平行于钳口表面的排列以及纤维与表面的接近都暗示着自然的适应性,以提高弯曲刚度和强度,而不是使表面区域具有增强的耐磨性。

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