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Sacrificial copper strip sensors for sulfur corrosion detection in transformer oils

机译:变压器油中硫腐蚀检测的牺牲铜带传感器

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Existing protocols (e.g., ASTM D 1275-B standard test method) applied to detect and monitor sulfur corrosion in transformer insulating oils are imprecise as it depends on visual observation. As a solution, thin-film sacrificial copper strips are proposed as a corrosive sulfur sensor. A two-level factorial design is utilized to investigate the significant effect of area and thickness upon the sensor's transformation resistance values. Next, a regression model is developed to estimate the sensor's transformation resistance values as functions of area and thickness. The resultant outputs from the two-level factorial design revealed that area, as a variable, exhibited higher significance at 90.19%, compared to either thickness or interaction between area and thickness. The proposed regression model obtained from two-level factorial design is significant in describing the trend displayed by the sensor's transformation resistance values. Finally, this paper details the clear correlation between the sensor's transformation resistance values and elemental sulfur concentration. (C) 2019 Elsevier Ltd. All rights reserved.
机译:应用于检测和监测变压器绝缘油中的硫腐蚀的现有方案(例如,ASTM D 1275-B标准测试方法,因为它取决于视觉观察。作为溶液,提出薄膜牺牲铜条作为腐蚀性硫传感器。使用两级因子设计来研究面积和厚度在传感器的变换电阻值上的显着效果。接下来,开发回归模型以估计传感器的变换电阻值作为区域和厚度的函数。与面积和厚度之间的厚度或相比,两级阶乘设计的所得输出显示出在90.19%的情况下表现出更高的显着性。从两级因子设计中获得的拟议回归模型在描述传感器的变换电阻值所显示的趋势方面具有重要意义。最后,本文详述了传感器的转化电阻值与元素硫浓度之间的明显相关性。 (c)2019年elestvier有限公司保留所有权利。

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