Functional Nano Structure Materials Lab. Publication

International Journal

Effect of carbon content on the mechanical behavior of MgO–C refractories characterized by Hertzian indentation
Journal
Ceramics International
Vol
42
Page
9955-9962
Author
Kee Sung Lee, Geon-Ho Jo, Yeon-Gil Jung, Yunki Byeun
Year
2016
Date
2016.06
File
Effect of carbon content on the mechanical behavior of MgO–C refractories characterized by Hertzian indentation.pdf (3.2M) 34회 다운로드 DATE : 2021-08-23 17:49:45
The mechanical behavior of magnesia–carbon (MgO–C) refractory materials containing 4, 11, and 19 wt% carbon was investigated by Hertzian indentation tests. No microstructural changes were observed for the various carbon amounts. The slope during loading and the residual displacement after unloading were determined from indentation load–displacement curves. Indentation conditions were varied to study their influence on the mechanical behavior of the MgO–C. Repetitive contact fatigue tests were also conducted. The carbon content and indentation ball size ultimately affected the indentation mechanical behavior. The MgO–C containing 4 wt% carbon exhibited relatively hard and brittle behavior, while the MgO–C containing 19 wt% carbon exhibited a quasiplastic behavior, independent of ball radius indented on the MgO–C. Results indicated that carbon, in suitable amounts, provides the MgO–C with soft and ductile behavior in contact, wear, and impact environments.