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Sintering behaviour of MgAl_2O_4--a prospective anode material

机译:MgAl_2O_4--预期阳极材料的烧结行为

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Awareness in environmental hygiene and escalation in the energy cost in electrometallurgical industries have necessitated a reauditing of the production technologies, more so in the case of aluminium as it is a highly energy intensive process. Metal aluminates are of interest due to their technological applications in aggressive environments. The preparation of the metal aluminates usually involves the solid state reaction (SSR) of the corresponding metal oxides or sulphates at high temperatures. The present investigation is the preparation of MgAl_2O_4 using the metal oxides by solid state synthesis. The compacts were sintered at high temperatures and their properties such as particle size, density, porosity, hardness, ac electrical conductivity and dielectric behaviour were evaluated. The phase formation and structural properties have been ascertained by XRD, FTIR, TG/differential thermal analysis (DTA) and scanning electron micrograph (SEM) studies. The sinterability characteristics of the materials strongly dependent on the temperature of the processing. The XRD patterns confirm the phase formation of MgAl_2O_4. The FTIR spectra show the structural details of the synthesized compound. From the SEM micrographs, it is revealed that the agglomeration process progresses with the increasing temperature. The ac electrical conductivity and dielectric behaviour of aluminates strongly depend upon sintering time, temperature and spinel formation.
机译:出于对环境卫生的关注以及电子冶金行业能源成本的上升,必须对生产技术进行重新审核,对于铝,由于其是高能耗工艺,因此更需要重新审核。金属铝酸盐由于其在腐蚀性环境中的技术应用而备受关注。金属铝酸盐的制备通常涉及在高温下相应金属氧化物或硫酸盐的固态反应(SSR)。目前的研究是通过固态合成使用金属氧化物制备MgAl_2O_4。在高温下烧结压块,并评估其性能,例如粒度,密度,孔隙率,硬度,交流电导率和介电性能。通过XRD,FTIR,TG /差热分析(​​DTA)和扫描电子显微镜(SEM)研究确定了相形成和结构性能。材料的可烧结性在很大程度上取决于加工温度。 XRD图谱证实了MgAl_2O_4的相形成。 FTIR光谱显示了合成化合物的结构细节。从SEM显微照片可以看出,附聚过程随着温度的升高而进行。铝酸盐的交流电导率和介电性能在很大程度上取决于烧结时间,温度和尖晶石的形成。

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