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Effect of Equal Channel Angular Pressing on the Pitting Corrosion Resistance on the Aluminum Alloys with/without Anodization

机译:等通道角挤压对有/无阳极氧化铝合金抗点蚀性能的影响

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The effect of equal-channel angular pressing (ECAP) on the pitting corrosion resistance of Al (AA1100) and Al-Mg (AA5052) alloy with anodization and without was investigated by means of polarization curves in solutions containing 300 ppm or 0.6 mol/L of Cl~- and by surface analysis. In Al and Al-Mg alloy without anodization, the potentials for pitting corrosion were evidently shifted to the noble direction by ECAP process, indicating that this process improves resistance to pitting corrosion. SEM observation revealed that the pitting corrosion occurred near the impurity precipitates and the size of impurity precipitated decreased with ECAP process. The time-dependence of corrosion potential and the polarization resistance determined by AC impedance technique suggested that the formation rate of Al oxide films was increased with ECAP process. The improvement in pitting corrosion resistance of Al and Al-Mg by ECAP seems to be attributable to the decrease in the size of impurity precipitates and the increase in the formation rate of Al oxide films.On the other hand, the time required for initiating pitting corrosion of anodised Al was longer with ECAP than without, indicating improvement in the pitting corrosion resistance by application of ECAP. However, the pitting corrosion of anodized Al-Mg alloy occurred earlier with ECAP than without, showing that the corrosion resistance was worse with ECAP than without. In anodized Al-Mg alloy, cracks occurred in the anodic oxide films during initial corrosion and the cracks were larger with ECAP than without. It is assumed that the pitting corrosion was promoted by the cracks due to the higher internal stress resulting from ECAP.
机译:在300 ppm或0.6 mol / L的溶液中通过极化曲线研究了等通道角挤压(ECAP)对阳极氧化和不阳极氧化的Al(AA1100)和Al-Mg(AA5052)合金抗点蚀性能的影响Cl〜-并通过表面分析。在未经阳极氧化的Al和Al-Mg合金中,点蚀的电位通过ECAP工艺明显转移到了高贵的方向,这表明该工艺提高了抗点蚀的能力。扫描电镜观察表明,随着ECAP工艺的进行,在杂质析出物附近发生点蚀,并且杂质析出物的尺寸减小。交流电阻抗技术测定的腐蚀电位和极化电阻随时间的变化关系表明,随着ECAP工艺的发展,铝氧化膜的形成速率增加。 ECAP改善了Al和Al-Mg的抗点蚀性能,这似乎是由于杂质沉淀物尺寸的减小和Al氧化物膜形成速率的增加所致。 另一方面,使用ECAP引发阳极氧化铝的点腐蚀的时间要长于没有使用ECAP的时间,这表明通过使用ECAP可以改善抗点腐蚀的能力。但是,使用ECAP时,阳极氧化的Al-Mg合金的点蚀比未使用ECAP时更早发生,这表明使用ECAP的耐蚀性比不使用时更差。在阳极氧化的Al-Mg合金中,在初始腐蚀过程中阳极氧化膜中出现裂纹,使用ECAP的裂纹比不使用ECAP的裂纹要大。可以推测,由于ECAP导致的内部应力较高,因此裂纹促进了点蚀。

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