焊接条件下大电流辉光放电的稳定

G. Bolotov, M. Bolotov, S. Yushchenko
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引用次数: 3

摘要

本文考虑了在运行(旋转)电场中,用多节阳极代替单片阳极,在放电电流为1 ~ 30 A,气体压力为1.33 ~ 13.3 kPa时,提高扩散键合过程中直流大电流辉光放电稳定性的可能性。结果表明,在恒定放电电流下,采用旋转电场的5段阳极组件,与使用固定电场的类似电极系统相比,辉光放电稳定存在的区域增加了1.5 ~ 1.7倍,发热点的能量密度增加了2.6 ~ 2.9倍。
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Stabilization of a High-Current Glow Discharge Under the Welding Conditions
The article considers the possibility of increasing stability of DC high-current glow discharge in the diffusion bonding processes at discharge currents 1 … 30 A and the gas pressure 1.33 … 13.3 kPa by replacing the monolithic anode with a multi-section one in the running (rotating) electric field. It is shown that the at constant discharge current the using of the 5-section anode assembly with a rotating electric field increases the region of a glow discharge stable existence by 1.5 … 1.7 times and the energy density in the heating spot in 2.6 … 2.9 times in comparison with a similar electrode system with the stationary electric field.
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