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Potential variation of a temporarily protective oil coating before its degradation

机译:临时保护性油膜在降解之前的电位变化

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A wire-beam electrode using mild steel wires was developed and used to study the potential variation of temporarily preventive oil coating before its degradation. It was found that the distribution of corrosion potential on the surface of oil-coated wire-beam electrode was het- erogeneous before the degradation of temporarily protective oil coating. At the early stage of immersion, the distribution of corrosion potential gradually shifted to a higher potential range with increasing of immersion time. When the distribution of corrosion potential reached to a highest potential range, it began to shift negatively to a lower potential range. It is suggested that this situation may be due to metal corrosion taking place at the metal/coating interface. The distribution of corrosion potential on oil-painted wire-beam electrode followed a normal probability distribution before the degradation of oil coating. With increasing of immersion time, the distribution of corrosion potential on oil-painted wire-beam electrode may change from normal probability distribution before the degradation of oil coating to discontinuous binomial distribution after the degradation of oil coating.
机译:开发了一种使用低碳钢线的线束电极,并用于研究临时预防性油涂层降解之前的电位变化。发现在临时保护性油膜降解之前,油膜丝束电极表面的腐蚀电位分布是不均匀的。在浸没初期,随着浸没时间的增加,腐蚀电位的分布逐渐转移到较高的电位范围。当腐蚀电位的分布达到最高电位范围时,它开始负向较低电位范围移动。建议这种情况可能是由于金属/涂层界面发生金属腐蚀所致。涂油丝束电极上腐蚀电位的分布遵循正态概率分布,直到涂油层降解。随着浸没时间的增加,涂漆线束电极上腐蚀电位的分布可能会从涂膜降解前的正态概率分布变为涂膜降解后的不连续二项式分布。

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