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Health Monitoring of Adhesive Joints using Magnetostrictive Fillers

机译:使用磁致伸缩填料对胶粘接头进行健康监测

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One major application for smart materials is measuring stresses or strains in load bearing structures. The ability to monitor structural health, and observe real time stress levels in load bearing platforms is a field of great interest. In this work, we develop and characterize a method for stress monitoring adhesively bonded joints by incorporating a magnetostrictive filler into the polymeric matrix. Magnetostrictive materials create a change in their surrounding magnetic field when subjected to strain, and thus serve as natural strain sensors, that require neither power supply nor any kind of wiring. A clear correlation between the stress and the magnetic field, which is measured at a distance of 20-60 mm from the specimen, is observed under both shear and compression loads. Moreover, there is a significant stress region in which the relationship between the stress and the magnetic field is approximately linear. This behavior demonstrates the possibility of monitoring the average stress in a specimen by a single magnetic sensor mounted at a distance from the specimen. Additionally, complete three dimensional mapping of the magnetic field around loaded specimens reveals that the specimen magnetization is not uniform and implies the existence of a correlation between the specimen magnetization and the stress field which was numerically computed. This behavior indicates the potential of mapping the local stress profile within a specimen by using an array of several magnetic sensors. The effects of magnetostrictive particle size and of applying a magnetic field during specimen polymerization are also discussed.
机译:智能材料的一个主要应用是测量承载结构中的应力或菌株。监测结构健康的能力,并观察负载平台中的实时应力水平是一种极大兴趣的领域。在这项工作中,我们通过将磁致伸缩填料掺入聚合物基质中,开发和表征压力监测粘合接头的方法。磁致伸缩材料在受到应变时产生周围磁场的变化,因此用作自然应变传感器,这既不需要电源也不需要任何配线。在剪切和压缩负载下观察到距样品20-60mm距离的应力和磁场之间的明显相关性。此外,存在显着的应力区域,其中应力和磁场之间的关系大致线性。该行为证明了通过安装在距样本距离的单个磁传感器的单个磁传感器监测样品中的平均应力的可能性。另外,装载样本周围的磁场的完整三维映射显示,样品磁化强度不均匀,并且意味着存在在数值上计算的样本磁化和应力场之间的相关性。该行为表示通过使用几个磁传感器阵列将局部应力分布映射局部应力分布。还讨论了磁致伸缩粒度和在样品聚合期间施加磁场的影响。

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