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Role of Potential in Stable Pit Growth of Austenitic Stainless Steels

机译:电位在奥氏体不锈钢稳定基坑生长中的作用

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The pitting behaviour of AISI type 316 stainless steel in 3.5% NaCI solution was investigated, using two electrochemical polarization methods: i) PD tests -samples were potentiodynamically polarized up to the pitting potential; ii) PDPS tests - initially samples were potentiodynamically polarized up to the metastable potential range and then the mode was changed from potentiodynamic to potentiostatic at a potential with metastable potential region. The first observation is that stable pit growth did not occur when the polarization mode was changed from PD to PS at a potential in the metastable potential region. By analyzing the current spikes corresponding to the me-tastably growing pits, the pit radii, pit current densities, and the pit stability product (xi) were calculated and compared between the PD and PDPS tests. The pit radii and the values of xi increased with the potential in the PD tests while they showed no noticeable changes with time in the PDPS tests. The pit current densities in the PD tests showed an increasing trend with the potential, which is thought to be leading to the stable pitting since in the PDPS tests they were decreasing with time in the PS mode.
机译:采用两种电化学极化方法研究了3.5%NaCl溶液中AISI 316型不锈钢的点蚀行为:i)Pd试验 - 叠层升高到蚀势升级; ii)PDPS测试 - 最初对稳定性电位范围的电位偏振,然后在亚稳潜在区域的电位下从电位动力学变为电位,改变模式。第一观察是当偏振模式从亚稳潜在区域的电位从PD到PS改变偏振模式时,不会发生稳定的凹坑生长。通过分析对应于Mea-Table Moursy凹坑,凹坑半径,凹坑电流密度和凹坑稳定性产品(XI)的当前尖峰进行了计算,并在Pd和PDPS测试之间进行比较。凹坑半径和Xi的值随着PD测试的电位而增加,而在PDPS测试中没有随着时间的推移没有明显的变化。 PD测试中的凹坑电流密度显示出越来越多的趋势,其潜在的趋势,这被认为是在PDPS测试中引起稳定的点蚀,它们在PS模式下随着时间的推移而降低。

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