TY - JOUR
T1 - Corrosion of a SiC-C/SiC composite in environments with Na2SO4 vapor and oxygen
AU - Luan, Xingang
AU - Cheng, Laifei
PY - 2002
Y1 - 2002
N2 - The gaseous salt corrosion of a 3D woven SiC-C/PyC/SiC composite by a mixture of Na2SO4 vapor and oxygen has been investigated at temperatures from 1000 to 1500 °C through an experimental approach based on mass and residual flexural strength changes. Below 1200 °C, the corrosion kinetics is controlled by diffusion of oxygen through microcracks in the matrix and the coatings. From 1200 to 1400 °C, the rate-controlling step is permeation of molecular oxygen through the silica film and the SiC coatings. Above 1400 °C, the corrosion kinetics is determined by diffusion of oxygen through pores in the silica film. As a compositional modifier, alkali contamination accelerates the corrosion of composites. Below 1400 °C, the oxygen partial pressure is inversely proportional to strength, but has nearly no effect on weight change. Above 1400 °C, the effect of pressure on weight loss is obvious. However, the pressure has almost no effect on strength. The higher the oxygen partial pressure, the higher the weight loss.
AB - The gaseous salt corrosion of a 3D woven SiC-C/PyC/SiC composite by a mixture of Na2SO4 vapor and oxygen has been investigated at temperatures from 1000 to 1500 °C through an experimental approach based on mass and residual flexural strength changes. Below 1200 °C, the corrosion kinetics is controlled by diffusion of oxygen through microcracks in the matrix and the coatings. From 1200 to 1400 °C, the rate-controlling step is permeation of molecular oxygen through the silica film and the SiC coatings. Above 1400 °C, the corrosion kinetics is determined by diffusion of oxygen through pores in the silica film. As a compositional modifier, alkali contamination accelerates the corrosion of composites. Below 1400 °C, the oxygen partial pressure is inversely proportional to strength, but has nearly no effect on weight change. Above 1400 °C, the effect of pressure on weight loss is obvious. However, the pressure has almost no effect on strength. The higher the oxygen partial pressure, the higher the weight loss.
KW - 3D woven SiC-C/PyC/SiC composite
KW - Gaseous salt corrosion
UR - http://www.scopus.com/inward/record.url?scp=0036969116&partnerID=8YFLogxK
U2 - 10.1515/secm.2002.10.4.261
DO - 10.1515/secm.2002.10.4.261
M3 - 文章
AN - SCOPUS:0036969116
SN - 0792-1233
VL - 10
SP - 261
EP - 266
JO - Science and Engineering of Composite Materials
JF - Science and Engineering of Composite Materials
IS - 4
ER -