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Activation and Repassivation of Stainless Steels in Artificial Brines as a Function of pH

机译:pH值对人造盐水中不锈钢的活化和钝化作用的影响

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摘要

When planning oil wells with stainless steel components, two possible reasons for depassivation have to be considered—chemical depassivation caused by acidizing jobs and mechanical depassivation caused by various tools and hard particles. The study explores conditions causing chemical activation of investigated steels and circumstances under which repassivation occurs after activation. The main focus of the study is to determine, how quickly various steels can repassivate under different conditions and to find pH values where repassivation will occur after depassivation. The investigated steels were ferritic (martensitic or bainitic) in the cases of 13Cr, 13Cr6Ni2Mo, and 17Cr4Ni2Mo, austenitic in the case of 17Cr12Ni2Mo, and duplex (austenitic and ferritic) in the case of 22Cr5Ni3Mo. Potentiodynamic experiments were employed to obtain electrochemical properties of investigated steels, followed by immersion tests to find ultimate conditions, where the steels still retain their passivity. After obtaining this information, scratch tests were performed to study the repassivation kinetics. It was found that repassivation times are similar for nearly all investigated steels independent of their chemical composition and microstructure.
机译:在计划带有不锈钢组件的油井时,必须考虑两个钝化的可能原因:酸化工作导致的化学钝化和各种工具和硬质颗粒引起的机械钝化。该研究探索了导致被调查钢化学活化的条件,以及活化后发生重新钝化的情况。该研究的主要重点是确定各种钢在不同条件下能多快地进行钝化,并找到在钝化后将发生钝化的pH值。研究的钢在13Cr,13Cr6Ni2Mo和17Cr4Ni2Mo情况下为铁素体(马氏体或贝氏体),在17Cr12Ni2Mo情况下为奥氏体,在22Cr5Ni3Mo情况下为双相钢(奥氏体和铁素体)。电位动力学实验用于获得被研究钢的电化学性能,然后进行浸没测试以找到最终条件,在该条件下钢仍保持其钝化性。获得此信息后,进行刮擦测试以研究再钝化动力学。发现几乎所有研究的钢的再钝化时间都是相似的,而与它们的化学组成和微观结构无关。

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