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Relation between the Diameter of Steel Wire and the Corrosion Rate in NaCl Aqueous Solution

机译:钢丝直径与NaCl水溶液中腐蚀速率的关系

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In order to clarify wire diameter dependency ofcorrosion rate of steel wires, which have been widely used invarious fields, immersion tests and polarization tests in pH 5.9 andpH 2.5 NaCl solutions were conducted to high carbon steel wireswith 0.1 to 1.0 mm in diameter. It was found that the corrosionrate was largely dependent upon the diameter in both solutions,that is, it increased with the decrease of the diameter. Diffusionlimiting current was observed in both solution, and it also had thesame diameter dependency. Corrosion rate and diffusion limitingcurrent in pH 2.5 solution wee about one order larger than those inpH 5.9 solution. The analysis of diffusion limiting current anddiffusion model for cylinder-shaped wire electrode based on Fick'slaw indicated that corrosion rate was controlled by diffusion ofdissolved oxygen in pH 5.9 solution and that by diffusion ofhydrogen ion in pH 2.5 solution, and that the increase of corrosionrate with the decrease of wire diameter was attributable topromotion of cathodic reduction reaction of dissolved oxygen inthe neutral solution, and that of hydrogen ion in the weak acidsolution, respectively.
机译:为了阐明在pH值钢丝,其已被广泛使用invarious领域,浸渍试验和极化试验的金属丝直径的依赖性ofcorrosion速率5.9和pH 2.5的NaCl溶液,以高碳钢进行wireswith 0.1至1.0毫米的直径。结果发现,在corrosionrate在很大程度上依赖于这两种解决方案的直径,也就是说,它与直径的减小而增大。在这两种溶液中观察到Diffusionlimiting电流,并且它也有thesame直径依赖性。腐蚀速率与在pH为2.5的溶液凌晨约一个数量比INPH 5.9溶液更大的扩散limitingcurrent。扩散限制电流anddiffusion模型基于Fick'slaw圆筒形线电极的分析表明,腐蚀率通过扩散ofdissolved氧在pH为5.9的溶液和ofhydrogen离子在pH 2.5的溶液来控制通过扩散,和该corrosionrate的增加用铁丝直径的减小是在矿井中性溶液中的溶解氧的阴极还原反应的归属topromotion,和分别是,在弱acidsolution氢离子。

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