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Scanning electrochemical microscopy at thermal sprayed anti-corrosion coatings: effect of thermal spraying on heterogeneous electron transfer kinetics

机译:热喷涂防腐涂层的扫描电化学显微镜:热喷涂对异质电子传递动力学的影响

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摘要

The effect of thermal spraying on the electrochemical activity of an anti-corrosion superalloy was studied quantitatively using scanning electrochemical microscopy (SECM). The superalloy used was Inconel 625 (a Ni base superalloy) and thin coatings of the alloy were formed on mild steel using high velocity oxy-fuel (HVOF) thermal spraying. The kinetics of electron transfer (ET) across the Inconel 625 coating/electrolyte interface were studied using SECM using ferrocenemethanol as the redox mediator. For comparison, the kinetics of ET across stainless steel/electrolyte and bulk wrought Inconel 625/electrolyte interfaces were also studied using SECM. The standard heterogeneous ET rate constant, k°, for ferrocenemethanol reduction at stainless steel was 1.0 ± 0.5 × 10−3 cm s−1, compared to 2.6 ± 1.8 × 10−2 cm s−1 at the wrought Inconel 625 surface. However, at the HVOF-sprayed Inconel 625 surface, the kinetics of ET varied across the surface and k° for ferrocenemethanol reduction ranged between ∼2.2 × 10−4 cm s−1 and ∼2.6 × 10−3 cm s−1. These results clearly demonstrate that SECM can be used to quantify the effect of thermal spraying on the electrochemical properties of Inconel 625 and that thermal spraying results in an electrochemically-heterogeneous surface.
机译:使用扫描电化学显微镜(SECM)定量研究了热喷涂对防腐高温合金电化学活性的影响。所用的超级合金是Inconel 625(一种镍基超级合金),并且使用高速氧燃料(HVOF)热喷涂在低碳钢上形成了该合金的薄涂层。使用二茂铁甲醇作为氧化还原介质的SECM,研究了跨Inconel 625涂层/电解质界面的电子转移(ET)动力学。为了进行比较,还使用SECM研究了ET在不锈钢/电解质和大块变形Inconel 625 /电解质界面上的动力学。在不锈钢上,二茂铁甲醇还原的标准异质ET速率常数k°为1.0±0.5×10-3 cm s-1,而在变形的Inconel 625表面为2.6±1.8×10-2 cm s-1。然而,在喷有HVOF的Inconel 625表面上,ET的动力学在整个表面上变化,二茂铁甲醇还原的k°在〜2.2×10-4 cm s-1至〜2.6×10-3 cm s-1之间。这些结果清楚地表明,SECM可用于量化热喷涂对Inconel 625电化学性能的影响,并且热喷涂可产生电化学不均一的表面。

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