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Magnetic domain structure in the presence of very thin martensite plates: Electron holography study on a thin-foil Fe-31.2 at.Pd alloy

机译:极薄马氏体板下的磁畴结构:薄箔Fe-31.2 at.Pd合金的电子全息研究

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摘要

The magnetic domain structure of a thin-foil Fe-31.2 at.Pd alloy, wherein the thickness of the martensite plates (of the order of 10 nm) is comparable to that of the magnetic domain walls, has been studied by electron holography and Lorentz microscopy. Magnetic flux maps obtained by electron holography demonstrate that the magnetization vectors are not necessarily oriented along the easy magnetization axis of the martensite - the result is in sharp contrast to the case of thick martensite plates (of the order of 102 nm or larger). This observation provides important information for actuator applications that utilize thin-foil ferromagnetic shape memory alloys. The change in the magnetic domain structure with the face-centered cubic to face-centered tetragonal martensitic transformation is also discussed. (c) 2005 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:通过电子全息术和洛伦兹显微镜研究了薄箔Fe-31.2 at.%Pd合金的磁畴结构,其中马氏体板的厚度(大约为10 nm)与磁畴壁的厚度相当。通过电子全息术获得的磁通图表明,磁化矢量不一定沿着马氏体的易磁化轴取向 - 结果与厚马氏体板(大约102nm或更大)的情况形成鲜明对比。这一观察结果为使用薄箔铁磁形状记忆合金的执行器应用提供了重要信息。还讨论了面心立方到面心四方马氏体相变对磁畴结构的变化.(c) 2005 Acta Materialia, Inc.,由Elsevier Ltd.出版。保留所有权利。

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