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首页> 外文期刊>Letters on Materials >The influence of microalloying and heat treatment on the structure and properties of Galfenol with high gallium concentration
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The influence of microalloying and heat treatment on the structure and properties of Galfenol with high gallium concentration

机译:微合金化和热处理对高镓浓度的加芬太尼的结构和性能的影响

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The structure of soft-magnetic and magnetostrictive alloys of the Galfenol type Fe-(27-28)?at.%?Ga after various heat treatment regimes has been studied. The features of formation of both metastable and equilibrium ordered phases in alloys based on Fe-Ga and Fe-Ga-rare-earth elements have been examined. Alloys of these systems belong to the class of highly magnetostrictive materials (up to 400?ppm for monocrystals) used in electromagnetic drives and special sensors. Two-phase alloys with a nonequilibrium phase based on the bcc lattice (D03 structure) and the equilibrium phase based on the fcc lattice (L12 structure) are investigated. Isothermal annealing of the Fe3Ga alloy at 400°C was used to obtain a microstructure that allows analysis of the kinetics of phase transformations under well-controlled conditions. It is established that isothermal annealing entails the formation of a microstructure with a certain ratio of metastable bcc and equilibrium fcc phases having different magnetic properties. The kinetics and mechanisms of phase transformations in binary Fe-Ga alloys and in multicomponent Fe-Ga-Tb alloys are systematically studied using a complex of methods of physical material science (X-ray diffraction (XRD), scanning electron microscopy with EBSD analysis (SEM-EBSD), optical microscopy (LM), vibration magnetometer (VSM), mo¨ssbauer spectroscopy. The influence of microalloying of the alloys with terbium on structure and functional characteristics is discussed. The role of Tb in the stabilization of nonequilibrium phases at room temperature is shown. The influence of small additions (0.5?at.%) of Tb on the changes in the structure Fe-Ga alloys was studied by m?ssbauer spectroscopy.
机译:研究了各种热处理方式下的Galfenol型Fe-(27-28)at。%?Ga软磁和磁致伸缩合金的结构。研究了基于Fe-Ga和Fe-Ga-稀土元素的合金中亚稳相和平衡有序相的形成特征。这些系统的合金属于电磁驱动器和特殊传感器中使用的高磁致伸缩材料类别(对于单晶,高达400?ppm)。研究了基于bcc晶格(D03结构)的非平衡相和基于fcc晶格(L12结构)的平衡相的两相合金。 Fe3Ga合金在400°C的等温退火用于获得微观结构,该组织可以分析在良好控制的条件下的相变动力学。已经确定,等温退火需要形成具有一定比例的具有不同磁性能的亚稳态bcc相和平衡fcc相的微结构。使用多种物理材料科学方法(X射线衍射(XRD),扫描电子显微镜和EBSD分析),系统地研究了二元Fe-Ga合金和多组分Fe-Ga-Tb合金中的相变动力学和机理。 SEM-EBSD),光学显微镜(LM),振动磁力计(VSM),穆斯堡尔光谱法,讨论了含with合金的微合金化对结构和功能特性的影响,Tb在稳定非平衡相时的作用用msssbauer光谱研究了少量的Tb(0.5at。%)对Fe-Ga合金结构变化的影响。

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