首页> 外文期刊>Biomaterials >On the mechanical properties of hierarchically structured biological materials.
【24h】

On the mechanical properties of hierarchically structured biological materials.

机译:关于分层结构的生物材料的机械性能。

获取原文
获取原文并翻译 | 示例
           

摘要

Many biological materials are hierarchically structured which means that they are designed from the nano- to the macro-scale in a sometimes self-similar way. There are lots of papers published including very detailed descriptions of these structures at all length scales--however, investigations of mechanical properties are most often focused on either nano-indentation or bulk mechanical testing characterizing properties at the smallest or largest size scale. Interestingly, there are hardly any investigations that systematically interconnect mechanical properties of different length scales. Nevertheless there are often conclusions drawn like the one that "biological materials exhibit their excellent mechanical properties due to their hierarchical structuring". Thus, we think there is a gap and discrepancy between the detection and description of biological structures and the correlated determination and interpretation of their mechanical properties. Hence, in this paper we order hierarchically structured biological materials with high mineral content according to their hierarchical levels and attribute measured mechanical properties to them. This offers the possibility to gain insight into the mechanical properties on different hierarchical levels even though the entire biological materials were tested. On the other hand we use data of one material, namely enamel, where mechanical properties were measured on every length scale. This kind of data analysis allows to show how a theoretical model developed by Huajian Gao and co-workers can be used to get closer insights into experimental data of hierarchically structured materials.
机译:许多生物材料是分层结构的,这意味着它们有时以自相似的方式从纳米级到宏观级进行设计。已经发表了许多论文,其中包括对所有长度尺度的这些结构的非常详细的描述-但是,对机械性能的研究通常集中在纳米压痕或批量机械测试上,以最小或最大尺寸尺度表征特性。有趣的是,几乎没有任何研究能够系统地互连不同长度尺度的机械性能。然而,经常得出像这样的结论:“生物材料由于其层次结构而显示出优异的机械性能”。因此,我们认为生物学结构的检测和描述与力学性能的相关确定和解释之间存在差距和差异。因此,在本文中,我们根据矿物质的等级水平订购具有高矿物质含量的分级结构的生物材料,并将测量到的机械性能归因于它们。即使对整个生物材料进行了测试,这也提供了深入了解不同等级机械特性的可能性。另一方面,我们使用一种材料(即搪瓷)的数据,在每种长度尺度上都测量了机械性能。这种数据分析可以显示高华建及其同事开发的理论模型如何用于更深入地了解分层结构材料的实验数据。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号