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Nacre in Abalone Shell: Organic and Inorganic Components and their effects to the Formation and Mechanical Properties.

机译:鲍鱼壳中的珍珠母:有机和无机成分及其对形成和力学性能的影响。

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摘要

Abalone nacre is a natural composite that exhibits exceptional mechanical properties due to its organization that extends to various levels of hierarchy. Most of the toughness has been attributed by nacre's third level of hierarchy which entitles a brick and mortar structure consisting of the CaCO3 tiles and organic interlayers. However, there are other important components that are vital to the structure and strength of red abalone nacre. The process of formation of red abalone (Haliotis rufescens) nacre following periods of growth interruption, taking into consideration important environmental factors (access to food and temperature) and to employ high-magnification characterization techniques (scanning electron microscopy and transmission electron microscopy) to better understand how the soft tissue (e.g. epithelium and organic membrane) influences the mechanism of growth.;The structure-property relationship of red abalone (Haliotis rufescens) nacre, focusing in the individual constituents (isolated mineral and isolated organic component) and comparing that to the integrated structure. Mechanical tests such as, tensile tests, microscratch, and nanoindentation is performed on the isolated organic constituent and the isolated mineral of red abalone shell. Specimens are characterized by SEM to verify the toughening and deformation mechanisms. Results obtained from the isolated mineral validate the importance of the organic constituent as the mechanical properties decline greatly as the organic component is removed. This approach forms a general picture of the mechanical response of the organic interlayers and growth bands and their effect on the toughness of the abalone nacre.;These results are significant to understand the important characteristics of abalone nacre, such as the structure and mechanical properties, and an attempt to aid in improving the latest attempts to produce novel nacre-inspired materials.
机译:鲍鱼珍珠质是一种天然复合材料,由于其组织可以扩展到各个层次,因此具有出色的机械性能。大部分韧性归因于珍珠层的第三等级,即由CaCO3瓷砖和有机中间层组成的砖混结构。但是,还有其他重要成分对红鲍鱼珍珠质的结构和强度至关重要。生长期中断后,考虑到重要的环境因素(获得食物和温度)并采用高倍放大表征技术(扫描电子显微镜和透射电子显微镜),形成红色鲍鱼珍珠质的过程了解软组织(例如上皮和有机膜)如何影响生长机制。;红色鲍鱼(Haliotis rufescens)珍珠层的结构-特性关系,着眼于单个成分(分离的矿物质和分离的有机成分),并将其与集成结构。对红鲍鱼壳的分离出的有机成分和分离出的矿物进行机械测试,例如拉伸测试,微划痕和纳米压痕。用SEM表征样品,以验证增韧和变形机理。从分离出的矿物中获得的结果证实了有机成分的重要性,因为随着去除有机成分,机械性能大大降低。这种方法形成了有机中间层和生长带的机械响应及其对鲍鱼珍珠质韧性的影响的总体情况;这些结果对于了解鲍鱼珍珠质的重要特征(例如结构和力学性能)具有重要意义。并试图帮助改进生产新型珍珠质材料的最新尝试。

著录项

  • 作者

    Lopez, Maria Isabel.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 224 p.
  • 总页数 224
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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