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FUNDAMENTAL INVESTIGATIONS AND INDUSTRIAL APPLICATIONS OF MAGNETOSTRICTION

机译:磁记录的基础研究和工业应用

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摘要

So far only bulk materials are used for technolgical applications of magnetostriction. For applications in micro-systems technology magnetostrctive films have to be developed, which show excellent soft-magnetic properties combined with giant magnetostriction. Amorphous Tb-DyFe films, which are prepared possessing an in plane or transverse magnetic anisotropy, show excellent soft-magnetic properties combined with giant magnetostriction. However, for technical applications the major drawback is the low Curie temperature which is typically around 400 K. To increase the Curie temperature and simultaneously achieve good soft-magnetic properties as well as giant magnetostriction the preparation of crystalline films with nanometer-sized grains is necessary. Terfenol-D-like films with additives of Zr or Mo were prepared by ion beam sputtering and different heat treatments were applied to investigate the crystallizatien behaviour. Furthermore, nanometer-scaled multilayers with Nb interlayers were prepared. This multilayer structure is suitable to inhibit grain growth and hence further decreases the average grain size. The resulting nanocrystalline microstructure leads to small coercive fields and high Curie temperatures. In addition, protective layers were investigated in order to avoid oxidation during the heat treatments for crystallization. The results will be discussed with respect to possible applications in micro-system technology. For industrial automation the actuation with compressed air plays an important role since pneumatics has without doubt always been an ideal modular system for all kinds of applications in almost every field of technology. Owing to its high modularity pneumatics is constantly complemented and expanded by new technological developments, suchas proportional pneumatics and servo-pneumatic actuators. Beside developments to evaluate the possibilities to use solid state actuators for miniaturized valves, already extremely accurate contactless displacement sensors on the basis of magnetostrictive effects are used for applications mentioned above. These magnetostrictive displacement sensors are detecting the propagation delay time of an ultrasonic wave in a magnetostrictive tube created by the interchange of a longitudinal and a circular magnetic field, the so-called Wiedemann effect. The principle of the Wiedemann effect will be explained and recent developments in utilizing this effect for highly sensitive position sensors will be shown.
机译:迄今为止,仅大块材料用于磁致伸缩的技术应用。为了在微系统技术中的应用,必须开发磁致伸缩膜,该膜具有优异的软磁性能和巨大的磁致伸缩性能。制备的具有平面或横向磁各向异性的非晶态Tb-DyFe膜具有出色的软磁性能和巨大的磁致伸缩性。但是,对于技术应用而言,主要缺点是居里温度低,通常约为400K。要提高居里温度并同时获得良好的软磁性能以及巨大的磁致伸缩,必须制备具有纳米级晶粒的结晶膜。通过离子束溅射制备了具有Zr或Mo添加剂的类Terfenol-D薄膜,并采用不同的热处理方法研究了其结晶行为。此外,制备了具有Nb中间层的纳米级多层。该多层结构适合于抑制晶粒生长,因此进一步减小了平均晶粒尺寸。所得的纳米晶体微结构导致小的矫顽场和高居里温度。另外,研究了保护层以避免结晶热处理期间的氧化。将针对微系统技术中的可能应用讨论结果。对于工业自动化而言,压缩空气致动起着重要作用,因为毫无疑问,气动一直是几乎每个技术领域中适用于各种应用的理想模块化系统。由于其高度的模块化,气动技术不断得到新技术发展的补充和扩展,例如比例气动技术和伺服气动执行器。除了评估用于小型阀的固态执行器的可能性的开发以外,在上述应用中还使用了基于磁致伸缩效应的已经非常精确的非接触式位移传感器。这些磁致伸缩位移传感器用于检测超声波在由纵向和圆形磁场的互换产生的磁致伸缩管中的传播延迟时间,即所谓的维德曼效应。将说明维德曼效应的原理,并显示将这种效应用于高灵敏度位置传感器的最新进展。

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