TY - JOUR
T1 - Effect of thermal physical properties on ablation properties of high silica/phenolic composite
AU - Shi, Sheng Bo
AU - Liang, Jun
AU - Fang, Guo Dong
PY - 2011/6
Y1 - 2011/6
N2 - According to ablation mechanism of high silica/phenolic composite, a physical model, considering ablation recession layer, chemical reaction boundary layer, liquid layer, charring layer, pyrolytic layer and original material layer, was established successively. For the flat plate ablation problem, the effect of the thermal physical properties, such as coefficient of thermal conductivity, specific heat capacity at constant pressure and stagnation enthalpy, on the ablation properties was studied. The ablation properties were embodied by the surface ablation recession rate, wall temperature, gasification ablation rate, thermal blockade effect factor and gasification fraction. The predicted results show that surface ablation recession rate decreases dramatically with the decrease of coefficient of thermal conductivity, while wall temperature, thermal blockade effect factor and gasification fraction increase reversely. The large specific heat capacity at constant pressure can decrease surface ablation recession rate and wall temperature greatly. Surface ablation recession rate and wall temperature increase with the increase of the stagnation enthalpy.
AB - According to ablation mechanism of high silica/phenolic composite, a physical model, considering ablation recession layer, chemical reaction boundary layer, liquid layer, charring layer, pyrolytic layer and original material layer, was established successively. For the flat plate ablation problem, the effect of the thermal physical properties, such as coefficient of thermal conductivity, specific heat capacity at constant pressure and stagnation enthalpy, on the ablation properties was studied. The ablation properties were embodied by the surface ablation recession rate, wall temperature, gasification ablation rate, thermal blockade effect factor and gasification fraction. The predicted results show that surface ablation recession rate decreases dramatically with the decrease of coefficient of thermal conductivity, while wall temperature, thermal blockade effect factor and gasification fraction increase reversely. The large specific heat capacity at constant pressure can decrease surface ablation recession rate and wall temperature greatly. Surface ablation recession rate and wall temperature increase with the increase of the stagnation enthalpy.
KW - Ablation property
KW - High silica/phenolic composite
KW - Thermal physical property
UR - http://www.scopus.com/inward/record.url?scp=80051564748&partnerID=8YFLogxK
M3 - Article
AN - SCOPUS:80051564748
SN - 1006-2793
VL - 34
SP - 354
EP - 359
JO - Guti Huojian Jishu/Journal of Solid Rocket Technology
JF - Guti Huojian Jishu/Journal of Solid Rocket Technology
IS - 3
ER -