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Hierarchical Composites with Electrophoretically Deposited Carbon Nanotubes for In Situ Sensing of Deformation and Damage

机译:具有电泳沉积的碳纳米管的等级复合材料用于变形和损伤

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摘要

As composites are used increasingly in structural components, novel techniques for detecting micro-scale damage are required. Their nanoscale size and high aspect ratio allow carbon nanotubes to create electrically conductive pathways that enable sensing. In this work, carbon nanotubes are deposited onto glass fabric using electrophoretic deposition to create hierarchical composites. Polyethylenimine functionalized carbon nanotubes are deposited from an aqueous dispersion using an electric field. Symmetric cross-ply composites are investigated as a model system to demonstrate the ability to detect incipient damage and transverse microcracks. The specimens are subjected to tensile loading, and a resistance increase is observed because of two key mechanisms—A reversible change in nanotube-nanotube tunneling gaps due to elastic straining of the network and a permanent severing of paths in the conducting network due to formation of transverse cracks in the 90° plies. By analyzing the electrical response, the damage state can be identified. Acoustic emission sensors are used to validate the results. The strength and Young’s modulus of the composites with integrated carbon nanotubes are similar to the control specimens. Crack density measurements using edge replication reveal that transverse cracking can be suppressed, demonstrating multi-functionality with improved damage tolerance and integrated sensing.
机译:由于复合材料越来越多地在结构部件中使用,需要用于检测微观尺度损坏的新技术。它们的纳米级尺寸和高纵横比允许碳纳米管形成能够感测的导电途径。在这项工作中,碳纳米管使用电泳沉积将碳纳米管沉积在玻璃织物上以产生分层复合材料。使用电场从水性分散体沉积聚乙烯氨基官能化碳纳米管。对对称的交叉层复合材料被研究为模型系统,以证明检测初始损坏和横截面的能力。试样经受拉伸载荷,并且由于两个关键机制 - 由于网络的弹性紧张而导致的纳米管 - 纳米管隧道间隙的可逆变化以及由于形成的导电网络中的路径的永久性切断而导致的纳米管 - 纳米管隧道间隙的可逆变化。横裂在90°层中。通过分析电响应,可以识别损坏状态。声发射传感器用于验证结果。具有集成碳纳米管的复合材料的强度和杨氏模量类似于对照样本。使用边缘复制的裂缝密度测量显示,可以抑制横变裂缝,展示具有改进的损坏公差和集成感测的多功能性。

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