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Comparative Analysis of Sintering Mn_(0.65)Zn_(0.35)Fe_2O_4 Ferrite by Microwave Energy and N_2 Atmosphere

机译:微波能与N_2气氛烧结Mn_(0.65)Zn_(0.35)Fe_2O_4铁氧体的比较分析

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Research in Mn-Zn ferrites have been growing in recent years, mainly because of the properties in high frequency application such as high saturation magnetization, low core losses, which are sensitive to the structure, processing conditions, such as sintering temperature, time and atmosphere. This study aims to evaluate the microstructure and magnetic characteristics Mn_(0.65)Zn_(0.35)Fe_2O_4 ferrite sintered in N_2 atmosphere and to microwave energy at 1200°C/2h. The samples were compacted by uniaxial pressing at 200 MPa and sintered in a microwave oven with a heating rate of 50°C/min and sintering time of 30 min. For samples sintered in N_2 atmosphere was used heating rate of 5°C/min with sintering time of 2 hours. The samples were characterized by apparent and bulk density, XRD, SEM and magnetic measurements. The results indicate the formation single phase of Mn-Zn ferrite for sample sintering in N_2 atmosphere, and to sintering by microwave oven observed the phase ferrite Mn-Zn with trace of secondary phase hematite. The density and saturation magnetization were 3.14 and 3.12 g/cm~3, 5 and 83 emug~(-1) for the samples sintered by microwave energy and N_2 atmosphere respectively.
机译:近年来,对Mn-Zn铁氧体的研究一直在增加,这主要是由于高频应用中的一些特性,例如高饱和磁化强度,低铁损,对结构敏感,加工条件(例如烧结温度,时间和气氛)等。 。本研究旨在评估在N_2气氛中烧结的Mn_(0.65)Zn_(0.35)Fe_2O_4铁氧体的显微组织和磁性能,并评估1200°C / 2h的微波能。通过在200MPa下单轴压制将样品压实,并在微波炉中以50℃/ min的加热速率和30min的烧结时间进行烧结。对于在N_2气氛中烧结的样品,使用5℃/ min的加热速率和2小时的烧结时间。通过表观和堆积密度,XRD,SEM和磁测量来表征样品。结果表明,在N_2气氛下,样品烧结形成了Mn-Zn铁氧体单相,并用微波炉进行了烧结,观察到微量的次级相为赤铁矿的Mn-Zn相铁氧体。微波能量和N_2气氛烧结的样品的密度和饱和磁化强度分别为3.14和3.12 g / cm〜3、5和83 emug〜(-1)。

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