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Contribution to the Study of the Relation between Microstructure and Electrochemical Behavior of Iron-Based FeCoC Ternary Alloys

机译:铁基FeCoC三元合金微观结构与电化学行为关系的研究

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摘要

This work deals with the relation between microstructure and electrochemical behavior of four iron-based FeCoC ternary alloys. First, the arc-melted studied alloys were characterized using differential thermal analyses and scanning electron microscopy. The established solidification sequences of these alloys show the presence of two primary crystallization phases (δ(Fe) and graphite) as well as two univariante lines : peritectic L + δ(Fe)↔γ(Fe) and eutectic L↔γ(Fe) + Cgraphite. The ternary alloys were thereafter studied in nondeaerated solution of 10−3 M NaHCO3 + 10−3 M Na2SO4, at 25°C, by means of the potentiodynamic technique. The results indicate that the corrosion resistance of the FeCoC alloys depends on the carbon amount and the morphology of the phases present in the studied alloys.
机译:这项工作处理了四种铁基FeCoC三元合金的微观结构与电化学行为之间的关系。首先,使用差热分析和扫描电子显微镜对电弧熔化的研究合金进行了表征。这些合金已建立的凝固序列表明存在两个主要的结晶相(δ(Fe)和石墨)以及两个单变谱线:包晶的L +δ(Fe)↔γ(Fe)和共晶的L↔γ(Fe) +石墨。此后,通过电位动力学技术,在25°C的10−3 M NaHCO3 + 10-3 M Na2SO4的非脱气溶液中研究三元合金。结果表明,FeCoC合金的耐腐蚀性取决于所研究合金中的碳含量和相的形态。

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