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Discharge Study of Argon DC Arc Jet Assisted by DBD Plasma for Metal Surface Treatment

机译:DBD等离子体辅助氩弧电弧射流进行金属表面处理的放电研究

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An argon dc arc jet assisted by dielectric barrier discharge (DBD) plasma was studied for discharge interaction between two plasmas and metal of plasma surface treatment at atmospheric pressure. While operating conditions of the dc arc jet were retained, DBD plasma was operated by changing the applied DBD voltage amplitudes ( between 6 and 12 kV to investigate the effect of DBD plasma addition to the dc arc jet on the changes of discharge structure and copper surface energy. By igniting the dc arc jet with DBD plasma, a glow plasma column is formed between the dc arc jet tail and the upper region of the DBD reactor, which transfers electrons and ions provided by the dc arc jet. From the correlation between maximum charge quantity ( and applied DBD voltage amplitude, the degree of activation of DBD plasma corresponding to the luminescent intensity is proportional to the . DBD plasma with the dc arc jet has the maximum of value at kV, then the dc arc jet assisted by DBD plasma becomes the most active. Based on the discharge property investigation, copper surface energy is effectively increased up to 127% at 10 kV using the dc arc jet assisted by DBD plasma, compared with using the dc arc jet alone.
机译:研究了电介质阻挡放电(DBD)等离子体辅助的氩直流电弧射流在大气压力下两个等离子体与等离子体表面处理金属之间的放电相互作用。在保留直流电弧射流的工作条件的同时,通过改变施加的DBD电压幅值(6 kV至12 kV之间)来操作DBD等离子体,以研究向直流电弧射流中添加DBD等离子体对放电结构和铜表面变化的影响通过用DBD等离子体点燃直流电弧射流,在直流电弧射流尾部和DBD反应器上部之间形成辉光等离子体柱,该辉光等离子体柱传输直流电弧射流提供的电子和离子。电荷量(和施加的DBD电压幅度,与发光强度相对应的DBD等离子体的激活程度与d成正比。直流电弧射流的DBD等离子体在kV处具有最大值,然后由DBD等离子体辅助的直流电弧射流根据放电特性的研究,与使用DDB等离子体技术相比,使用DBD等离子体辅助的DC电弧射流可在10 kV电压下有效地将铜表面能提高到127%。仅直流电弧射流。

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