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Role of second phase particles in pitting corrosion of 3003 Al alloy in NaCl solution

机译:第二相颗粒在NaCl溶液中3003铝合金点蚀中的作用

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The second phase particles in 3003 aluminum (Al) alloy were characterized by scanning electron microscope, energy-dispersive X-ray analysis and X-ray diffraction techniques. The role of second phase particles in Al alloy pitting corrosion was investigated by cyclic polarization measurement, and scanning vibrating electrode technique. Results demonstrated that the second phase particles in 3003 Al alloy are mainly Al_x(Fe,Mn) intermetallics, with an average diameter of about 5μm.The enrichment of Mn in second phase particles forms a galvanic cell effect relative to the adjacent Al alloy substrate. The initiation of pitting corrosion of 3003 Al alloy is the local dissolution of Al substrate around the second phase particles. When a sufficient amount of Al is dissolved away, the second phase particles drop off from the Al substrate, forming large pitting cavities that are usually linked each other.
机译:通过扫描电子显微镜,能量色散X射线分析和X射线衍射技术表征了3003铝(Al)合金中的第二相颗粒。通过循环极化测量和扫描振动电极技术研究了第二相颗粒在铝合金点蚀中的作用。结果表明,3003铝合金中的第二相颗粒主要为Al_x(Fe,Mn)金属间化合物,平均直径约为5μm。第二相颗粒中Mn的富集相对于相邻的Al合金基底形成电化电池效应。 3003铝合金的点蚀开始是第二相颗粒周围的Al基体局部溶解。当足够量的Al溶解掉时,第二相颗粒会从Al基材上掉落,形成通常相互连接的大蚀坑。

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