TY - JOUR
T1 - Numerical simulation of basic parameters in plasma spray
AU - Fan, Qun Bo
AU - Wang, Lu
AU - Wang, Fu Chi
PY - 2004/3
Y1 - 2004/3
N2 - On the basis of energy balance in the plasma gas, a new, simplified but effective mathematical model is developed to predict the temperature, velocity and ionization degrees of different species at the torch exit, which can be directly calculated just by inputting the general spraying parameters, such as current, voltage and flow rates of gases. Based on this method, the effects of plasma current and the flow rate of Ar on the basic parameters at the torch exit are discussed. The results show that the temperature, velocity and ionization degrees of gas species will increase with the increase of the plasma current; while increasing Ar flow rate can increase the velocity at the exit but decrease the temperature and ionization degrees of plasma species. The method would be helpful to predict the temperature and velocity fields in a plasma jet in future, and direct the practical plasma spray operations.
AB - On the basis of energy balance in the plasma gas, a new, simplified but effective mathematical model is developed to predict the temperature, velocity and ionization degrees of different species at the torch exit, which can be directly calculated just by inputting the general spraying parameters, such as current, voltage and flow rates of gases. Based on this method, the effects of plasma current and the flow rate of Ar on the basic parameters at the torch exit are discussed. The results show that the temperature, velocity and ionization degrees of gas species will increase with the increase of the plasma current; while increasing Ar flow rate can increase the velocity at the exit but decrease the temperature and ionization degrees of plasma species. The method would be helpful to predict the temperature and velocity fields in a plasma jet in future, and direct the practical plasma spray operations.
KW - Energy balance
KW - Numerical simulation
KW - Plasma spray
UR - http://www.scopus.com/inward/record.url?scp=3042849141&partnerID=8YFLogxK
M3 - Article
AN - SCOPUS:3042849141
SN - 1004-0579
VL - 13
SP - 80
EP - 84
JO - Journal of Beijing Institute of Technology (English Edition)
JF - Journal of Beijing Institute of Technology (English Edition)
IS - 1
ER -