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High speed video evidence for localised discharge cascades during plasma electrolytic oxidation

机译:高速视频证据表明等离子电解氧化过程中存在局部放电级联

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Information is presented from high speed video imaging of the free surface of coatings being grown on aluminium substrates by PEO processing. The exposure time during image capture ranged down to 5.5 mu s, while the linear spatial resolution of the images ranged upwards from about 12 mu m. The area being viewed was about 2.4 mm(2), which was taken to be representative of the substrate area as a whole (similar to 129 mm(2)). PEO processing was carried out at 50 Hz AC. The periods over which image sequences were captured was about 100 ms, covering several cycles of variation of the applied potential. This operation was repeated periodically while the coating thickness increased from a few microns to several tens of microns. During the imaging periods, it was typically observed that tens or hundreds of individual discharges were occurring, all of them readily distinguishable from the background light levels. Their duration was of the order of several tens of microseconds. It was noticeable that they tended to occur in "cascades" at particular locations, each sequence comprising tens or hundreds of individual discharges, with an "incubation" period between them of the order of several hundreds of microseconds. It seems likely that they all occurred during the positive (anodic) half-cycle, while the applied voltage was sufficiently high. An individual cascade tended to persist (at the same location) over several voltage cycles. As the coating became thicker, these characteristics broadly persisted, although individual discharges became longer-lived and more energetic. An attempt is made to relate these observations to the overall picture of how coating growth takes place during PEO processing, and also to the overall energy consumption. (C) 2015 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
机译:信息来自通过PEO处理在铝基板上生长的涂层自由表面的高速视频成像。图像捕获期间的曝光时间范围低至5.5毫秒,而图像的线性空间分辨率范围则从约12微米向上。被查看的区域约为2.4 mm(2),被视为代表整个基板区域(类似于129 mm(2))。 PEO处理在50 Hz AC下进行。捕获图像序列的时间约为100毫秒,涵盖了施加电势变化的几个周期。周期性地重复该操作,同时涂层厚度从几微米增加到几十微米。在成像期间,通常观察到发生了数十或数百个单独的放电,所有这些放电很容易与背景光水平区分开。它们的持续时间约为几十微秒。值得注意的是,它们倾向于在特定位置的“级联”中发生,每个序列包含数十或数百个单独的放电,它们之间的“潜伏”时间约为数百微秒。它们似乎都发生在正(阳极)半周期内,而施加的电压足够高。单个级联趋于在几个电压周期内持续存在(在同一位置)。随着涂层变厚,尽管个别放电变得寿命更长且更有活力,但这些特性仍广泛存在。尝试将这些观察结果与PEO处理过程中涂层生长如何发生的总体情况以及总体能耗相关联。 (C)2015作者。由Elsevier B.V.发布。这是CC BY许可下的开放获取文章(http://creativecommons.org/licenses/by/4.0/)。

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