铜在水介质中的腐蚀疲劳

Q3 Engineering
I. Reformatskaya, A. Podobayev
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引用次数: 0

摘要

该船发动机和螺旋桨的冷却系统出现故障,对乘客和船员构成严重危险。这些装置的损坏通常是由腐蚀引起的,其中局部腐蚀是最危险的。在所考虑的情况下,当金属同时受到腐蚀环境和交变机械载荷的影响时,腐蚀疲劳行为(发生)的条件就出现了。本文对这些装置的阴极电化学保护进行了展望。由于冷却系统和螺旋桨是由铜合金制成的,因此研究了溶液的电位和成分对结构材料主要成分铜腐蚀的影响。在氟塑料电化学电池中测试了具有悬臂的光滑机械压力集中器的铜样品。对其施加交变弯曲载荷,并测定样品破坏前的载荷循环次数(耐久性)。实验在表面活性无活性电解质NaF的脱气溶液中进行,以及在氟化物溶液中添加表面活性剂和有机表面活性剂-苯并三唑。同时,设定了一个电位间隔,在这个电位间隔中,唯一的法拉第过程是可能的——微量溶解氧的减少。研究发现,在低于零电荷电势的电势下,铜的耐久性显著提高。相反,在溶液中引入氯离子和苯并三唑会导致其耐久性大大降低。根据金属在具有不同氟化物浓度的氟化钠溶液中的微分电容的测量数据来确定铜的零电荷电势。金属耐久性的增加是通过被氢原子吸附的水分子之间发生氢键来解释的。这体现了所谓的负面雷宾德效应。对于电化学保护,建议电位范围低于金属的零电荷电位,但高于水分解电位。对于冷却系统,建议使用去离子水作为冷却液。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Corrosion Fatigue of Copper in Aqueous Media
The failure of the cooling systems of engines and propellers of the ship poses the serious hazard to passengers and crew. Damage to these units is often caused by corrosion, with localized corrosion being the most dangerous. In the case under consideration, when the metal is simultaneously affected by a corrosive environment and alternating mechanical loads, conditions arise for the behaviour (occurrence) of corrosion fatigue. The prospects of cathodic electrochemical protection of these units are considered in the paper. Since the cooling systems and propellers are made of copper alloys, the effect was studied concerning the potential and composition of the solution on the corrosion of the main component of the structural material — copper. Copper samples with a smooth mechanical pressure concentrator cantilevered in a fluoroplastic electrochemical cell were tested. Alternating bending loads were applied to them, and the number of load cycles before the destruction of the sample (durability) was determined. The experiments were carried out in deaerated solutions of the surfactantly inactive electrolyte NaF, as well as fluoride solutions with additives of surfactants and organic surfactants - benzotriazole. At the same time, an interval of potentials was set, in which the only Faraday process is possible — the reduction of traces of dissolved oxygen. It was found that at potentials less than the zero charge potential, the durability of copper increases significantly. And the introduction of chloride ions and benzotriazole into the solution, on the contrary, leads to a strong decrease in its durability. The potential of zero charge of copper was determined from the measurement data of the differential capacitance of the metal in sodium fluoride solutions with different concentrations of fluoride. The increase in the durability of the metal is explained by the occurrence of hydrogen bonds between the water molecules adsorbed by the hydrogen atoms. This manifests the so-called negative Rebinder effect. For electrochemical protection, the potential range is recommended below the potential of zero charge of the metal, but above the potential of water decomposition. For cooling systems, it is recommended to use deionized water as a coolant.
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来源期刊
Bezopasnost'' Truda v Promyshlennosti
Bezopasnost'' Truda v Promyshlennosti Environmental Science-Environmental Science (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
110
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