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Intergranular corrosion evaluation of friction stir welded AISI 410S ferritic stainless steel

机译:搅拌摩擦焊AISI 410S铁素体不锈钢的晶间腐蚀评估

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This study aimed to investigate the susceptibility of AISI 410S ferritic stainless steel to intergranular corrosion when friction stir welded (FSW) using the double-loop electrochemical potentiokinetic reactivation (DL-EPR) test. The highest values obtained for the ratio between the reactivation current (Ir) and the activation current (Ia) were found at the top of the advancing side for the two conditions tested. The steel for Condition 1, which was welded with a rotational speed of 800rpm and high heat input, gaveIr/Iapeaks 60% greater than Condition 2, which was welded with a rotational speed of 450rpm and a lower heat input. These peaks were attributed to the presence of precipitates with high chromium content of about 21%. In these FSW welds the sensitization of the AISI 410S steel was detected by the electrochemical test according to the intensity of the undesirable phases formed. The DL-EPR test was clearly able to quantify the different levels of sensitization in the FSW welds according to the energy used by the process parameters.
机译:这项研究旨在研究使用双回路电化学电位动能再活化(DL-EPR)测试搅拌摩擦焊接(FSW)时AISI 410S铁素体不锈钢对晶间腐蚀的敏感性。对于所测试的两个条件,在前进侧的顶部发现了重新激活电流(Ir)与激活电流(Ia)之比的最高值。条件1的钢以800rpm的转速进行焊接且输入热量较高,其Ir / Iapeaks比条件2的钢以450rpm的转速进行焊接且热量输入较低。这些峰归因于存在高铬含量约21%的沉淀物。在这些FSW焊缝中,根据形成的不良相的强度,通过电化学测试检测了AISI 410S钢的敏化性。 DL-EPR测试显然能够根据工艺参数消耗的能量来量化FSW焊缝中不同的敏化程度。

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