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龙虾壳矿化几丁质纤维片交叉微结构
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重庆大学,重庆大学

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中图法分类号:TB3301;TB39

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国家自然科学基金资助(项目号11272367),国家自然科学基金项目(面上项目,重点项目,重大项目)


Crossed Microstructure of Mineral Chitin Fiber Sheets of Lobster Cuticle
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State Key Laboratory of Coal Mine Disaster Dynamics and Control,Chongqing University,State Key Laboratory of Coal Mine Disaster Dynamics and Control,Chongqing University

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    摘要:

    扫描电镜观察显示龙虾壳是一种由矿化几丁质纤维层与胶原蛋白质构成的自然生物陶瓷复合材料。其中的矿化几丁质纤维层平行于龙虾壳的表面层状排列,而矿化胶原蛋白质作为基体分布其间起粘接的作用。进一步仔细观察矿化几丁质纤维层,发现它们又是由非常薄且垂直于纤维层的矿化几丁质纤维片所组成。观察也发现不同纤维层中的矿化几丁质纤维片具有不同的方向,它们构成一种纤维片交叉微结构。通过模型分析研究了与龙虾壳断裂韧性密切相关的纤维片交叉微结构的最大拔出力,并将其与纤维片平行微结构的最大拔出力进行比较,结果表明矿化几丁质纤维片交叉微结构的最大拔出力明显大于纤维片平行微结构的最大拔出力,实验验证了模型分析的结果。研究结果为高性能陶瓷复合材料设计提供有益指导。

    Abstract:

    The observation of scanning electron microscope shows that the cuticle of lobster is a natural bioceramic composite consisting of mineral chitin fiber layers and collagen protein matter. The mineral chitin fiber layers are parallel with the surface of the cuticle and the collagen protein matter is distributed in the layers as the matrix felting the fiber layers. The careful observation shows that the mineral chitin fiber layers are further composed of thin and orderly mineral chitin fiber sheets which are vertical to the fiber layers. The observation also shows that the mineral chitin fiber sheets in different fiber layers have different orientations, which compose a fiber crossed microstructure. The maximum pullout force of the fiber crossed microstructure is investigated and compared with that of the fiber parallel microstructure based on their representative models. The result indicates that the maximum pullout force of the fiber crossed structure is markedly larger than that of the fiber parallel structure. The analytical result is experimentally validated. The research result provides profitable guidance for the design of the high-performance ceramic composites.

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陈斌,程自东.龙虾壳矿化几丁质纤维片交叉微结构[J].稀有金属材料与工程,2018,47(S1):453~456.[Chen Bin, Cheng zidong. Crossed Microstructure of Mineral Chitin Fiber Sheets of Lobster Cuticle[J]. Rare Metal Materials and Engineering,2018,47(S1):453~456.]
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  • 收稿日期:2017-07-24
  • 最后修改日期:2018-02-22
  • 录用日期:2018-02-26
  • 在线发布日期: 2018-10-22
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