Effects of Dry Grinding of Talc/Mg-Source Mixtures on Formation of Forsterite.
Mitsuru Nikaido, Shigeru Sano, Fumio Saito
Abstract
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Mitsuru Nikaido, Shigeru Sano, Fumio Saito
Abstract
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Two kinds of powder mixtures, talc-MgCO3 basic (MCB) and talc-MgO, were ground in air using a planetary ball mill in order to investigate the formation of forsterite in the sintered body. Grinding the mixture of talc-MCB caused the structure to change into amorphous state, while crystalline phases still remained in the ground mixture of talc-MgO. The amorphization of talc-MCB facilitated the formation of forsterite. When the mixture of talc-MgO was used, not only the mean size of MgO particles but also their crystallinity and the specific surface area significantly affected the formation of forsterite in the sintered body.
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Two kinds of powder mixtures, talc-MgCO3 basic (MCB) and talc-MgO, were ground in air using a planetary ball mill in order to investigate the formation of forsterite in the sintered body. Grinding the mixture of talc-MCB caused the structure to change into amorphous state, while crystalline phases still remained in the ground mixture of talc-MgO. The amorphization of talc-MCB facilitated the formation of forsterite. When the mixture of talc-MgO was used, not only the mean size of MgO particles but also their crystallinity and the specific surface area significantly affected the formation of forsterite in the sintered body.
Key concepts: Talc, Forsterite, Crystallinity, Materials science, Grinding, Amorphous solid, Mineralogy, Ball mill