Effects of heat treatment on structure and magnetic properties of Fe/(NiZn)Fe <ce:inf loc='post'>2</ce:inf>O <ce:inf loc='post'>4</ce:inf> soft magnetic composite powders prepared using a co-precipitation method
首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of heat treatment on structure and magnetic properties of Fe/(NiZn)Fe 2O 4 soft magnetic composite powders prepared using a co-precipitation method
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Effects of heat treatment on structure and magnetic properties of Fe/(NiZn)Fe 2O 4 soft magnetic composite powders prepared using a co-precipitation method

机译:热处理对Fe /(NiZn)Fe 2 O 4 使用共沉淀法制备软磁复合粉末

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AbstractFe powder was coated with precipitate via a co-precipitation method using chlorate as the raw material. Then, the coated powder was heat treated under different conditions. The effects of the heat treatment atmosphere and temperature on the morphology, phase formation, crystallinity, grain size and lattice constant of the coated layer of powders were investigated using scanning electron microscopy (SEM), X-ray diffraction (XRD) and thermogravimetric–differential scanning calorimetry (TG–DSC). The magnetic properties of the composite powder were determined using a Quantum Design vibrating sample magnetometer (QD-VSM). The results show that a fine, uniform coating layer of particles formed on the surface of the Fe powder after co-precipitation. Through heat treatment, the coating generated spinel Ni–Zn ferrite. The coated layer of argon-treated powders had a more uniform and regular morphology, purer phase and better crystallinity than air-treated powders. The saturation magnetisation first increased and subsequently decreased as the heating temperature increased. Similarly, the coercivity first decreased and subsequently increased. The sample annealed in air at 300?°C had the highest saturation magnetisation (Ms?=?186.3 emu/g) and the lowest coercivity (Hc?=?23.6?Oe), whereas the sample annealed in argon at 450?°C had the greatest saturation magnetisation (Ms?= 196.4 emu/g) and relatively lower coercivity (Hc?=?17.5?Oe). The powders annealed in argon atmosphere had betterMsand lowerHcthan those annealed in air, mainly because coated powders heated in air produce a large amount of non-magnetic Fe2O3.Graphical abstractDisplay OmittedHighlights?Fe pa
机译:<![CDATA [ 抽象 Fe粉末通过使用氯酸盐作为原料的共沉淀法涂有沉淀物。然后,将涂覆的粉末在不同的条件下进行热处理。采用扫描电子显微镜(SEM),X射线衍射(XRD)和热重分析研究了热处理气氛和温度对粉末涂覆层的形态,相形成,结晶度,晶粒尺寸和晶格常数的影响扫描量热法(TG-DSC)。使用量子设计振动样品磁力计(QD-VSM)测定复合粉末的磁性。结果表明,在共沉淀后,在Fe粉末的表面上形成细腻均匀的涂层。通过热处理,涂层产生尖晶石Ni-Zn铁氧体。涂层的氩处理的粉末的涂层具有比空气处理粉末更均匀,常规的形态,更纯度和更好的结晶度。饱和磁化首先增加并随后随后随着加热温度的增加而降低。类似地,矫顽力首先降低并随后增加。在300Ω°C的空气中退火的样品具有最高的饱和磁化( m s < / mml:mrow> "/mml:math>?=?186.3 emu / g)和最低的矫顽力( h c ?=?23.6?OE),而在450°C的氩气中退火的样品具有最大的饱和磁化( M S ?= 196.4 EMU / g)和相对较低的矫顽力( < MML:msub> h c ??=?17.5?OE)。在氩气氛中退火的粉末具有更好的 M S 和较低的 H C 比在空气中退火的那些,主要是因为在空气中加热的涂层粉末产生大量的非磁性Fe 2 O 3 图形摘要 显示省略 突出显示 FE PA

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