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Studies on Potentiodynamic Polarization Behaviour of Cryorolled Al-Mg-Si Alloy

机译:低温Al-Mg-Si合金的电位偏振行为研究

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Cryorolling is considered to be the prominent processing method to develop high strength light weight alloys. Even though considerable work is available on mechanical properties of cryorolled materials, no detailed studies are available on corrosion behavior of these cryorolled sheets. Al-Mg-Si alloy is cryorolled to 50% and 75% reduction at -196°C and also at room temperature. Potentiodynamic polarization studies were performed on these rolled sheets in 3.5 wt% NaCl solution and the results were compared with those of the annealed and solutionized samples of Al-Mg-Si alloy. Irrespective of the rolling temperature, all the rolled samples, except for LNR 75%, exhibited inferior corrosion resistance compared with those of the reference samples. This is attributed to the large amount of internal stresses and sub-grain network developed during rolling. The rolled samples evidenced peak shift compared to those of the annealed and solutionized samples and higher peak broadening is observed, which is due to the development of higher grain boundary area and enhanced lattice strains along with large dislocation densities. These grain boundaries and dislocation densities are the root cause for the inferior corrosion properties of the rolled samples.
机译:Cryorolling被认为是开发高强度轻质合金的突出处理方法。尽管在低温材料的机械性能上可获得相当大的工作,但没有详细研究这些低温片的腐蚀行为。 Al-Mg-Si合金在-196°C下加入50%和75%,还在室温下。在3.5wt%NaCl溶液中对这些轧制片进行电位动力学偏振研究,并将结果与​​Al-Mg-Si合金的退火和溶液化样品进行比较。无论轧制温度如何,除了LNR 75%外,所有卷样样品都与参考样品相比表现出低耐腐蚀性。这归因于在轧制期间开发的大量内部应力和亚谷网络。与退火和解决的样品相比,轧制样品证明了峰值偏移,并且观察到较高的峰扩大,这是由于高晶界区域和增强晶格菌株以及大的位错密度的发展。这些晶界和位错密度是卷起样品的劣质性质的根本原因。

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