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Highly dense magnesium aluminate spinel bodies are usually fabricated using pressure-assisted methods, such as spark plasma sintering (SPS), in the presence of lithium fluoride as a sintering aid. The present work investigates whether the addition of transition metal fluorides promotes the sintering of MgAl2O4 bodies during SPS. At the same time, such fluorides can act as a source of optically active dopants. A commercial MgAl2O4 was mixed with 0.5 wt% of LiF, MnF2, and CoF2 and, afterwards, consolidated using SPS at 1400 °C. Although MnF2 and CoF2 promote the densification as effectively as LiF, they cause significant grain growth.
MgAl<sub>2</sub>O<sub>4</sub>, manganese fluoride, lithium fluoride, Article, MgAl2O4; lithium fluoride; cobalt fluoride; manganese fluoride; spark plasma sintering; grain growth, cobalt fluoride, MgAl2O4, grain growth, spark plasma sintering
MgAl<sub>2</sub>O<sub>4</sub>, manganese fluoride, lithium fluoride, Article, MgAl2O4; lithium fluoride; cobalt fluoride; manganese fluoride; spark plasma sintering; grain growth, cobalt fluoride, MgAl2O4, grain growth, spark plasma sintering
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