Initial surface conditions affecting the formation of plasma on metal conductors driven by a mega-ampere current pulse

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Abstract

Significant variations in plasma formation have been observed for thick aluminum rods with varying initial surface conditions when pulsed by an intense current in a z-pinch configuration. Rods were fabricated on a lathe to a diameter of 1.0 mm followed by a 300 μm wide and 6 mm long strip milled on the surface to remove a portion of the azimuthally extended machining marks left by the lathe. A subset of these rods was then electropolished, reducing the azimuthally extended machining marks and reducing the mean surface roughness. The fabrication process provided two types of rods with several surface finishes: a smooth surface (both the milled flat face and curved region), a rough surface (milled flat faced region), an azimuthally extended rough surface (curved region), to study the effect of surface finish on plasma formation. Rods with azimuthally extended surface defects left by the machining process form plasma early compared to rods that have had the azimuthally extended features removed and/or reduce by electropolishing the surface or milling away a section of the surface.

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Yates, K. C., Awe, T. J., Bauer, B. S., Hutchinson, T. M., Yu, E. P., Fuelling, S., … Weis, M. R. (2020). Initial surface conditions affecting the formation of plasma on metal conductors driven by a mega-ampere current pulse. Physics of Plasmas, 27(8). https://doi.org/10.1063/5.0003649

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