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Electrolytic pickling of duplex stainless steel

机译:双相不锈钢的电解酸洗

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Pickling of duplex stainless steels has proved to be much more difficult than that of standard austenitic grades. Electrolytic pre-pickling is shown to be a key process towards facilitating the pickling process for material annealed both in the production-line and in laboratory experiments. The mechanism for the neutral electrolytic process on duplex 2205 and austenitic 316 steels has been examined and the oxide scale found to become thinner as a function of electrolytic pickling time. Spallation or peeling of the oxide induced by gas evolution did not play a decisive role. A maximum of about 20% of the current supplied to the oxidised steel surface goes to dissolution reactions whereas about 80% of the current was consumed in oxygen gas production. This makes the current utilisation very poor, particularly against the background of reports that in indirect electrolytic pickling only about 30% of the total current, supplied to the process, actually goes into the strip. A parametric study was therefore carried out to determine whether adjustment of process variables could improve the current utilisation.
机译:事实证明,双相不锈钢的酸洗比标准奥氏体不锈钢的酸洗困难得多。电解预酸洗被证明是促进在生产线和实验室实验中对材料进行退火的酸洗工艺的关键过程。已经研究了双相2205和奥氏体316钢上的中性电解过程的机理,并且发现氧化皮随着电解酸洗时间的延长而变薄。气体逸出引起的氧化物剥落或剥落没有决定性作用。提供给氧化钢表面的电流中最多约有20%用于溶解反应,而氧气生产中消耗了约80%的电流。这使得电流利用率非常差,尤其是在有报道称间接电解酸洗仅提供给该工艺的总电流的约30%实际上进入带钢的背景下。因此,进行了一项参数研究,以确定调整过程变量是否可以提高当前利用率。

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