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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Microstructure and crystallographic texture of the chitin-protein network in the biological composite material of the exoskeleton of the lobster Homarus americanus
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Microstructure and crystallographic texture of the chitin-protein network in the biological composite material of the exoskeleton of the lobster Homarus americanus

机译:美国龙虾外骨骼生物复合材料中几丁质-蛋白质网络的微观结构和晶体结构

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摘要

The exoskeleton of the lobster Homarus americanus is a multiphase biological composite material which consists of an organic matrix (crystalline α-chitin fibers and various types of non-crystalline proteins) and minerals (mainly calcite). In this study we discuss experimental data about the mesoscopic structure and the crystallographic texture (orientation distribution) of the α-chitin-protein fiber network in this material. The synchrotron measurements reveal very strong crystallographic textures of the α-chitin. According to these data, a large fraction of the α-chitin lattice cells is arranged with their longest axis parallel to the normal of the surface of the exoskeleton. Additionally, a smaller fraction of the α-chitin cells is oriented with their longest axis perpendicular to the cuticle surface. These structural investigations reveal the pronounced role of crystallographic orientation distributions in mineralized biological composite materials which may be of relevance for an improved understanding of biological and bio-inspired nano-composites.
机译:龙虾美洲大螯虾的外骨骼是一种多相生物复合材料,由有机基质(晶体α-甲壳素纤维和各种类型的非晶体蛋白质)和矿物质(主要是方解石)组成。在这项研究中,我们讨论了有关这种材料中α-甲壳质蛋白纤维网络的介观结构和晶体织构(取向分布)的实验数据。同步加速器的测量结果显示,α-几丁质的晶体结构非常强。根据这些数据,大部分α-几丁质晶格单元的最长轴平行于外骨骼表面的法线排列。另外,较小部分的α-几丁质细胞的最长轴垂直于角质层表面。这些结构研究揭示了结晶取向分布在矿化的生物复合材料中的显著作用,这可能与改善对生物学和受生物启发的纳米复合材料的了解有关。

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