Sánchez-Zambrano Karla Sofía, Hernández-Reséndiz Marina, Gómez-Rodríguez Cristian, García-Quiñonez Linda Viviana, Aguilar-Martínez Josué Amilcar, Rodríguez-Castellanos Edén Amaral, Verdeja Luis Felipe, Fernández-González Daniel, Castillo-Rodríguez Guadalupe Alan
Facultad de Ingeniería Mecánica y Eléctrica (FIME), Universidad Autónoma de Nuevo León (UANL), San Nicolás de los Garza 66450, Mexico.
Faculty of Engineering, University of Veracruz, Coatzacoalcos 96535, Mexico.
Materials (Basel). 2022 Apr 26;15(9):3117. doi: 10.3390/ma15093117.
In this work, we studied the phases in a Mg-Ti-O system using a 1:1 formulation of MgO:TiO, mixing synthetic brucite of Mexican origin with TiO microparticles of high purity, with a heat treatment at 1100 °C for 1 h. Due to its valence electrons, TiO can contribute to the sintering process to improve density in MgO products. The raw materials and formulation by XPS and X-RD techniques were characterized. The results demonstrate the presence of different oxidation states in titania and the formation of different oxides in the Mg-Ti-O system when mixed and calcined at 1100 °C; additionally, we estimated the formation of vacancies in the crystal lattice during the transformation from hexagonal brucite to magnesia with a cubic structure centered on the faces. Its thermal behavior is indicated by the MgO-TiO phase diagram.
在这项工作中,我们使用氧化镁:二氧化钛1:1的配方研究了镁 - 钛 - 氧体系中的相,将墨西哥产的合成水镁石与高纯度二氧化钛微粒混合,并在1100℃下热处理1小时。由于其价电子,二氧化钛可有助于烧结过程,以提高氧化镁产品的密度。通过XPS和X - RD技术对原材料和配方进行了表征。结果表明,在1100℃混合和煅烧时,二氧化钛中存在不同的氧化态,并且在镁 - 钛 - 氧体系中形成了不同的氧化物;此外,我们估计了在从六方水镁石转变为以面心立方结构的氧化镁过程中晶格中空位的形成。其热行为由氧化镁 - 二氧化钛相图表示。