Effect of Alumina Content on the Hot Corrosion of SiC by NaCl and Na2SO4

NaCl과 Na$_2$SO$_4$에 의한 SiC 고온 부식에 미치는 Alumina 첨가량의 영향

  • 이수영 (한국기계연구소 요업재료실) ;
  • 고재웅 (한국기계연구소 요업재료실) ;
  • 김해두 (한국기계연구소 요업재료실)
  • Published : 1991.08.01

Abstract

The specimens for the corrosion test were made by hot-pressing of SiC power with 2 wt% Nl2O3 and 10wt% Al2O3 additions at 200$0^{\circ}C$ and 205$0^{\circ}C$. The specimens were corroded in 37 mole% NaCl and 63 mole% Na2SO4 salt mixture at 100$0^{\circ}C$ up to 60 min. SiO2 layer was formed on SiC and then this oxide layer was dissolved by Na2O ion in the salt mixture. The rate of corrosion of the specimen containing 10 wt% Al2O3 was slower than that of the specimen containing 2 wt% Al2O3. This is due to the presence of continuous grain boundary phase in the specimen containing 10 wt% Al2O3. The oxidation of SiC produced gas bubbles at the SiC-SiO2 interface. The rate of corrosion follows a linear rate law up to 50 min. and then was accelerated. This acceleration is due to the disruption oxide layer by the gas evolution at SiC-SiO2 interface. Pitting corrosion has found at open pores and grain boundaries.

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