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Multifunctional SMArt composite material for in situ NDT/SHM and de-icing

机译:用于原位无损检测/除冰和除冰的多功能SMArt复合材料

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摘要

The past few decades have seen significant growth in the development and application of multifunctional media for the enhancement of material properties, thermo-mechanical and sensing properties. This research work reports a novel approach in which a multifunctional material, herein referred to as SMArt composite, can be employed as a structural health monitoring system for strain sensing and damage detection (SMArt sensing and SMArt thermography), but also as an embedded ice protection tool for structural applications (referred as SMArt de-icing). Such a material, obtained by embedding shape memory alloy (SMA) wires within traditional carbon reinforced plastic composites, relies on the possibility of using the wires both to increase the mechanical properties of composites panels and to exploit their intrinsic electrothermal properties. The electrical resistance variation and the internal power resistive heating source provided by the SMA network, enable a built in and fast assessment of the strain distribution and in situ damage visualization via thermographic imaging. The efficiency of these techniques was experimentally validated on a number of SMArt composite laminates with single and multiple internal defects at various depths. The results showed that strain sensing and damage detection were achieved with high spatial resolution and accuracy, without the need to use large external heaters or complex signal processing techniques.
机译:在过去的几十年中,用于增强材料性能,热机械性能和传感性能的多功能介质的开发和应用取得了显着增长。这项研究工作报告了一种新颖的方法,其中可以将多功能材料(这里称为SMArt复合材料)用作用于应变传感和损伤检测的结构健康监测系统(SMArt传感和SMArt热成像),还可以用作嵌入式防冰层用于结构应用的工具(称为SMArt除冰)。通过将形状记忆合金(SMA)线嵌入传统的碳增强塑料复合材料中而获得的这种材料依赖于使用这些线来提高复合材料面板的机械性能并利用其固有的电热性能的可能性。 SMA网络提供的电阻变化和内部电阻功率加热源,可以通过热成像成像对应变分布进行内置和快速评估,并在现场进行损伤可视化。这些技术的效率已在许多SMArt复合层压板上进行了实验验证,这些层压板在不同深度具有单个和多个内部缺陷。结果表明,无需使用大型外部加热器或复杂的信号处理技术,即可以较高的空间分辨率和精度实现应变传感和损伤检测。

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