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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Effect of cathode microstructure on arc velocity and erosion rate of cold cathodes in magnetically rotated atmospheric pressure arcs
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Effect of cathode microstructure on arc velocity and erosion rate of cold cathodes in magnetically rotated atmospheric pressure arcs

机译:阴极微观结构对磁旋转大气压电弧中冷阴极电弧速度和腐蚀速率的影响

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Atmospheric pressure arc velocity and arc erosion measurements were performed on thermal sprayed copper cathodes having grain size distributions from submicrometre to a few micrometres in a continuous running arc system. Ultrahigh purity (UHP), 99.99% pure, argon and a mixture of UHP argon with 10% (volumetric) extra dry air were used as plasma forming gases. An external magnetic field of 0.10 T was used to rotate the arc which was operated at a constant power setting of 6 kW (150 A and 40 V). Cathodes having different microstructures were formed using high velocity oxygen fuel (HVOF) spraying and vacuum plasma spraying (VPS) methods with different annealing times. HVOF sprayed cathodes were tested for arc erosion and arc velocity in their as-sprayed state and also after annealing them at 300 and 600 °C for 1 and 8 h durations in an inert argon atmosphere. VPS sprayed coatings were tested as-sprayed. The effect of the initial coating thickness on erosion rates was investigated. Annealing HVOF coatings at 600 °C for 8 h produced near equi-axed grains with a 2–3 μm average size. These coatings showed 60% higher steady state arc velocities and up to 68% lower erosion rates compared with massive copper cathodes having a 20–23 μm average grain size. VPS coatings having a 0.9–1.5 μm average grain size gave up to 70% lower erosion rates when compared with massive copper cathodes. The results show a clear effect of the cathode microstructure on the arc velocity and the erosion rate.
机译:在具有连续运行电弧系统中具有从亚微米到几微米的粒度分布的热喷涂铜阴极上进行大气压电弧速度和电弧腐蚀测量。使用超高纯度(UHP),99.99%的纯氩气和UHP氩气与10%(体积)额外干燥空气的混合物作为等离子体形成气体。使用0.10 T的外部磁场旋转电弧,该电弧在6 kW(150 A和40 V)的恒定功率设置下运行。使用具有不同退火时间的高速氧燃料(HVOF)喷涂和真空等离子喷涂(VPS)方法形成具有不同微观结构的阴极。测试了HVOF喷涂阴极在喷涂状态下的电弧腐蚀和电弧速度,并且还在惰性氩气气氛中分别于300和600°C退火1小时和8小时后进行了测试。对VPS喷涂的涂料进行喷涂测试。研究了初始涂层厚度对腐蚀速率的影响。在600°C下将HVOF涂层退火8 h会产生接近等轴晶粒,平均尺寸为2-3μm。与平均晶粒尺寸为20–23μm的大型铜阴极相比,这些涂层的稳态电弧速度高60%,腐蚀速率低68%。与块状铜阴极相比,平均粒径为0.9–1.5μm的VPS涂层的腐蚀速率降低了70%。结果表明,阴极微结构对电弧速度和腐蚀速率有明显影响。

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