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Magnetic States in Ensemble of Ferromagnetic Nanoparticles in Cu-Mn-Al Alloy

机译:Cu-Mn-Al合金中铁磁纳米粒子集合体中的磁态

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摘要

Two Cu-Mn-Al samples of different compositions were studied: one exhibiting martensitic transformation, another without structural transition. X-ray diffraction and magnetic measurements demonstrate that different magnetic behaviors of alloys originate from different concentrations and sizes of ferromagnetic nanoparticles, which appear after solid solution decomposition.Estimation of magnetic moments of ferromagnetic nanoparticles from magnetization curves was performed using Langevin function and compared to those obtained from X-ray examination. Granular systems are known to show giant magnetoresistance. Therefore, magnetoresistance of Cu-Mn-Al melt-spun ribbons after different aging times was measured. The study has shown that increase in the concentration of Mn atoms and time of aging in Cu-Mn-Al alloy leads to an increase in the amount of precipitated phase appearing as ferromagnetic nanoparticles.
机译:研究了两个不同组成的Cu-Mn-Al样品:一个样品表现出马氏体相变,另一个没有结构转变。 X射线衍射和磁测量表明,固溶分解后出现的不同浓度和尺寸的铁磁性纳米粒子会引起合金的不同磁性行为。使用Langevin函数估算铁磁性纳米粒子的磁矩,并将其与磁化曲线进行比较。从X射线检查获得。已知颗粒系统显示出巨大的磁阻。因此,测定了不同时效时间后的Cu-Mn-Al熔纺带的磁阻。研究表明,Cu-Mn-Al合金中Mn原子浓度的增加和时效时间的增加导致以铁磁纳米颗粒形式出现的析出相数量的增加。

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