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Advanced Magnetic Materials for Aeronautics

机译:航空用高级磁性材料

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In the field of magnetic sensors, magnetic microwires with positive magnetostriction are the materials of the future. Their mechanical and magnetic properties render them ideal materials for applications in aeronautics. A single microwire with a 40 jj.m diameter and a length of 10 mm is capable of capturing information about tensile stresses, magnetic fields, temperature and distance. This information is carried by a parameter called the Switching Field, HSW, which is specific for different types of microwire. Numerous physical qualities affect the HSW and through sensing of HSW, these qualities may be quantified. (A number of physical qualities affecting HSW can be sensed and quantified by means of a contactless induction method.) What distinguishes the system developed by the present authors from other measuring systems based on magnetic microwires is the positioning of a microwire outside the coil system. Thanks to this improvement it is possible to use microwires embedded directly in the construction material. Small dimensions microwires do not damage the structure of the construction material. The absence of a galvanic connection makes this technology even more interesting compared with traditional forge gauges. Offering the possibility of the simultaneous measuring of four parameters, this technology can be used in a wide range of aviation applications. Measurements of an external magnetic field can be usedfor the navigation and stabilization of an aerial vehicle. Tensile stress and distance measuring can be helpful to understand some processes occurring under the surface of the construction material and also to perform fatigue monitoring or structure load monitoring. Another big advantage of magnetic microwires is the low price. Just 1 gram of base material is sufficient to prepare about 40 km of microwire. All these features combine to offer us a material ideal for Smart Sensors, possibly available for use in the near future.
机译:在磁传感器领域,具有正磁致伸缩性的磁性微线是未来的材料。它们的机械和磁性能使其成为航空应用的理想材料。直径为40毫米,长度为10毫米的单根微线能够捕获有关张应力,磁场,温度和距离的信息。该信息由称为交换字段HSW的参数承载,该参数专用于不同类型的微线。许多物理质量影响HSW,并且通过感测HSW,可以量化这些质量。 (可以通过非接触感应方法来感测和量化影响HSW的许多物理质量。)本作者开发的系统与其他基于磁性微线的测量系统的区别在于,将微线放置在线圈系统外部。由于这一改进,可以使用直接嵌入建筑材料中的微线。小尺寸的微丝不会损坏建筑材料的结构。与传统的锻造量规相比,由于没有电连接,这项技术变得更加有趣。由于可以同时测量四个参数,因此该技术可用于广泛的航空应用。外部磁场的测量可以用于飞行器的导航和稳定。拉伸应力和距离测量有助于理解建筑材料表面下发生的某些过程,并有助于进行疲劳监测或结构载荷监测。磁性微线的另一个主要优点是价格低廉。仅1克的基础材料就足以制备约40 km的微丝。所有这些功能共同为我们提供了智能传感器的理想材料,可能在不久的将来使用。

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