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利用碳纳米管网络对先进纤维复合材料中的损伤演化进行实时原位传感。

Real-time in situ sensing of damage evolution in advanced fiber composites using carbon nanotube networks.

作者信息

Thostenson Erik T, Chou Tsu-Wei

机构信息

Center for Composite Materials and Department of Mechanical Engineering, University of Delaware, Newark, DE 19716, USA.

出版信息

Nanotechnology. 2008 May 28;19(21):215713. doi: 10.1088/0957-4484/19/21/215713. Epub 2008 Apr 23.

Abstract

Developments in producing nanostructured materials with novel properties have opened up new opportunities in which unique functionality can be added to existing material systems. As advanced fiber composites are utilized more frequently in primary structural applications there is a key challenge to enhance the performance and reliability while reducing maintenance. As a consequence there is tremendous scientific and technical interest in the development of techniques for monitoring the health of composite structures where real-time sensing can provide information on the state of microstructural damage. In this research we utilize electrically conductive networks of carbon nanotubes as in situ sensors for detecting damage accumulation during cyclic loading of advanced fiber composites. Here we show that, by combining load and strain measurements in real-time with direct current electrical resistance measurements of the carbon nanotube network, insight can be gained toward the evolution and accumulation of damage. The resistance/strain relations show substantial hysteresis due to the formation and opening/closing of cracks during cyclic loading. Through interpreting the resistance response curves we identify a parameter that may be utilized as a quantitative measure of damage.

摘要

具有新颖特性的纳米结构材料的开发为在现有材料系统中添加独特功能开辟了新机遇。随着先进纤维复合材料在主要结构应用中越来越频繁地被使用,在提高性能和可靠性同时减少维护方面存在关键挑战。因此,对于开发用于监测复合结构健康状况的技术有着巨大的科学和技术兴趣,其中实时传感可提供有关微观结构损伤状态的信息。在本研究中,我们利用碳纳米管的导电网络作为原位传感器,以检测先进纤维复合材料循环加载过程中的损伤累积。在此我们表明,通过将实时的载荷和应变测量与碳纳米管网络的直流电阻测量相结合,可以深入了解损伤的演变和累积。由于循环加载过程中裂纹的形成和开合,电阻/应变关系显示出明显的滞后现象。通过解释电阻响应曲线,我们确定了一个可作为损伤定量度量的参数。

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