阳极
锥面
辉光放电
阴极
法国号角
大气压力
轴对称性
高速摄影
放电
气体放电
机械
光学
材料科学
化学
原子物理学
等离子体
声学
物理
气象学
电极
复合材料
物理化学
量子力学
作者
Pengying Jia,Kun Gao,Shuai Zhou,Junyu Chen,Jiacun Wu,Kaiyue Wu,Xuechen Li
标识
DOI:10.1088/1361-6595/abde51
摘要
Self-deformation has been observed for an atmospheric pressure diffuse discharge initiated in the air gap between a needle anode and a water cathode, which undergoes a morphology scenario from a cone, an axially symmetric horn, to a rectangular horn as time elapses. During the self-deformation process, pH value and electric conductivity of the water cathode vary with time. Moreover, electrical measurements indicate that applied voltage and discharge current are time-invariant for the conical discharge, while periodically pulsed for the other two discharges. This may suggest different formation mechanisms of them. Hence, fast photography is implemented by a high-speed video camera and an intensified charge coupled device. Results indicate that the diffuse discharges with different morphologies belong to a glow discharge regime. Among them, the conical discharge is composed of stationary micro-discharge, and the horn-shaped discharges consist of moving micro-discharge. Moreover, the axially symmetric horn is a self-rotating version of the rectangular horn. Furthermore, the rectangular horn originates from the swing of a micro-discharge filament like a pendulum motion. Finally, qualitative explanations are given for the experimental phenomena mentioned above.
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