Within this work a passive and wireless magnetic sensor, to monitor linear displacements is proposed. We exploit recent advances in 3D printing and fabricate a polymer bonded magnet with a spatially linear magnetic field component corresponding to the length of the magnet. Regulating the magnetic compound fraction during printing allows specific shaping of the magnetic field distribution. A giant magnetoresistance magnetic field sensor is combined with a radio-frequency identification tag in order to passively monitor the exerted magnetic field of the printed magnet. Due to the tailored magnetic field, a displacement of the magnet with respect to the sensor can be detected within the sub-mm regime. The sensor design provides good flexibility by controlling the 3D printing process according to application needs. Absolute displacement detection using low cost components and providing passive operation, long term stability and longevity renders the proposed sensor system ideal for structural health monitoring applications.
翻译:在这项工作中,提议使用一个被动和无线磁感应器,以监测线性离位。我们利用最近在3D打印方面的进展,并制造一个带有与磁体长度相应的空间线性磁场组件的聚合粘合磁铁。在打印过程中对磁化合物碎片进行管制,可以具体地形成磁场分布。巨型磁频磁场传感器与一个无线电频率识别标记相结合,以便被动地监测印刷磁铁的磁场。由于有专门设计的磁场,在子毫米系统内可以探测到传感器磁磁质的移位。传感器设计根据应用需要控制3D打印过程,从而提供了良好的灵活性。利用低成本组件进行绝对离位探测并提供被动操作、长期稳定性和寿命,使得拟议的传感器系统对结构健康监测应用十分理想。