Research and Development of Novel Refractory of MgO Doped with ZrO2 Nanoparticles for Copper Slag Resistance

Author:

Gómez-Rodríguez Cristian,Antonio-Zárate Yanet,Revuelta-Acosta Josept,Verdeja Luis Felipe,Fernández-González DanielORCID,López-Perales Jesús FernandoORCID,Rodríguez-Castellanos Edén Amaral,García-Quiñonez Linda Viviana,Castillo-Rodríguez Guadalupe Alan

Abstract

This study investigates the corrosion mechanism on 100 wt.% MgO and 95 wt.% MgO with 5 wt.% nano-ZrO2 ceramic composites. First, MgO powder and powder mixtures (MgO + nano ZrO2) were uniaxially and isostatically pressed; then, they were sintered at 1650 °C. Corrosion by copper slag was studied in sintered samples. Physical properties, microstructure, and penetration of the slag in the refractory were studied. Results reveal that ZrO2 nanoparticles enhanced the samples’ densification, promoting grain growth due to diffusion of vacancies during the sintering process. Additionally, magnesia bricks were severely corroded, if compared with those doped with nano-ZrO2, mainly due to the dissolution of MgO grains during the chemical attack by copper slag.

Funder

Consejo Veracruzano de Investigación Científica y Desarrollo Tecnológico (COVEICYDET).

Publisher

MDPI AG

Subject

General Materials Science

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