화학공학소재연구정보센터
Plasma Chemistry and Plasma Processing, Vol.22, No.2, 271-283, 2002
Characteristics of argon laminar DC plasma jet at atmospheric pressure
Argon DC plasma jets in stable laminar flow were generated at atmospheric pressure with a specially designed torch under carefully balanced generating conditions, Compared with turbulent jets of short length with expanded radial appearance and high working noise, the laminar jet could be 550 mm in length with almost unchanged diameter along the it hole length and very low noise. At gas feeding rate of 120 cm(3)/s, the jet length increases with increasing arc current in the range of 70-200 A, and thermal efficiency decreases slightly at first and then leveled off, With increasing gas flow rate, thermal efficiency of the laminar jets increases and could reach about 40%, when the arc current is kept at 200 A. Gauge pressure distributions of the lets impinging on a flat plate were measured, The maximum gauge pressure value of a laminar jet at low gas feeding rate is much lower than that of a turbulent jet. The low pressure acting on the material surface is favorable for surface cladding of metals, whereas the high pressure associated with turbulent jets will break down the melt pool.