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Corrosion protection afforded by praseodymium conversion film on Mg alloy AZNd in simulated biological fluid studied by scanning electrochemical microscopy

机译:扫描电化学显微镜研究simulated转化膜对镁合金AZNd在模拟生物流体中的腐蚀防护作用

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摘要

Surface passivation of AZNd Mg alloy with Pr(NO3)3 is studied using scanning electrochemical microscopy (SECM) in surface generation/tip collection (SG/TC) and AC modes. Corrosion protection afforded by the Pr treatment and the degradation mechanism in a simulated biological environment was examined on a local scale and compared with non-treated AZNd. SG/TC mode results revealed a drastic decrease in H2 evolution due to the Pr treatment. Mapping the local insulating characteristics using AC-SECM showed higher conductivity of the surface where H2 evolution was most favorable.
机译:使用扫描电化学显微镜(SECM)在表面生成/尖端收集(SG / TC)和AC模式下研究了具有Pr(NO3)3的AZNd Mg合金的表面钝化。在局部规模上检查了在模拟生物环境中通过Pr处理提供的腐蚀防护和降解机理,并将其与未处理的AZNd进行了比较。 SG / TC模式结果显示,由于Pr处理,H2释放量急剧减少。使用AC-SECM绘制局部绝缘特性的图谱显示出H2析出最有利的表面较高的电导率。

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