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75Al 25) 100-xB x alloys prepared by mechanical alloying]]>

机译:<![CDATA [CDATA [纳米结构的磁性和结构特性(FE 75 AL 25 100-X B X 机械合金制备的合金]]>

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AbstractNew magnetic nanocrystalline powders (Fe75Al25)100-xBx(x?=?0, 5, 9, 12) were prepared by mechanical alloying. The boron content and milling time affect the magnetic and structural properties of these alloys. Morphological, microstructural, structural, thermal and magnetic characterizations of powders that were milled for different times were investigated by scanning electron microscopy, X-ray diffraction, vibrating sample magnetometry and SQUID techniques. The formation of two crystalline phases was observed with increasing boron content. The major phase corresponds to an FeAl bcc phase, and the second phase, with lower content, corresponds to an FeB phase, which required additional milling time. With increasing milling time, the crystallite size decreased to the nanoscale level, whereas the microstrain and lattice parameter of the disordered solid solution increased. A decrease in coercivity (Hc) with increasing boron content was also observed. These variations are explained based on crystallite size and strain variation in the samples during milling.Graphical abstractDisplay OmittedHighlights?(Fe0.75Al0.25)100-xBx(x?=?0,5,9,12) nanocrystalline powders were synthesized by mechanical alloying.?Increasing the boron content, the formation of two crystalline phases was observed, FeAl and Fe(B) phases.?When the boron is added the hard ferromagnetic behavior becomes soft magnetic.?The measured parameters show good premises for remarkable structural characteristics and interesting physical properties.]]>
机译:<![CDATA [ 抽象 新磁性纳米晶体粉末(Fe 75 AL 25 100-X B x通过机械合金化制备(X?= 0,5,9,12)。硼含量和铣削时间影响这些合金的磁性和结构性质。通过扫描电子显微镜,X射线衍射,振动样品磁力测定和鱿鱼技术研究了用于不同时间的粉末的形态学,微观结构,结构,热和磁性,粉碎。观察到两个结晶相的形成随着硼含量的增加。主相对应于FEAL BCC阶段,并且具有较低含量的第二阶段对应于22B相,这需要额外的研磨时间。随着铣削时间的增加,微晶尺寸降低到纳米级水平,而无序固体溶液的微纹纹和晶格参数增加。还观察到矫顽力(H C )的降低,随着硼含量的增加。这些变型基于铣削期间样品中的晶体尺寸和应变变化来解释。 < ce:section-title id =“sectitle0015”>图形摘要 显示省略 突出显示 (fe 0.75 AL 0.25 100-X B X (x?= 0,5,9,12)纳米晶体粉末通过机械合金化合成。 增加硼含量,观察到两个结晶相的形成,feal和Fe(b)阶段。 当添加硼时,硬铁磁性行为变为软磁性。 测量参数显示出良好的场所,以获得显着的结构特征和有趣的物理性质。 ]]>

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