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Use of electrochemical techniques to study the corrosion of metals in model fluoride melts

机译:使用电化学技术研究模型氟化物熔体中金属的腐蚀

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摘要

Molten fluorides are appealing coolants for innovative nuclear systems but structural alloys may undergo corrosion at high temperature. Because corrosion primarily occurs via electrochemical reactions, electrochemical techniques are ideal for the study of corrosion thermochemistry and kinetics. Examples are given. An electrochemical series was established using voltammetry in LiF-NaF at 1173 K. Stability increases in the following order: Na, Cr, Fe, Ni, Mo/W, Ag, Au. Various alloys were also classified according to their oxidation resistance. A cathodic protection method was developed to curb the intergranular attack of some nickel alloys in molten LiF-CaF₂-MgF₂-ZrF₄ containing tellurium vapor at 953 K. Voltammetry and polarization resistance measurement were used to estimate the rate of chromium selective dissolution for nickel base alloys immersed in LiF-NaF at 1073 K and 1173 K.
机译:熔融氟化物是用于创新核系统的有吸引力的冷却剂,但结构合金可能会在高温下发生腐蚀。由于腐蚀主要通过电化学反应发生,因此电化学技术非常适合研究腐蚀热化学和动力学。举例说明。使用伏安法在LiF-NaF中于1173 K建立了电化学系列。稳定性按以下顺序增加:Na,Cr,Fe,Ni,Mo / W,Ag,Au。各种合金还根据其抗氧化性进行分类。开发了一种阴极保护方法来抑制某些镍合金在953 K下在含碲蒸气的熔融LiF-CaF 2 -MgF 2 -ZrF 3中的晶间腐蚀。使用伏安法和极化电阻测量来估算镍基合金中铬的选择性溶解速率浸入1073 K和1173 K的LiF-NaF中。

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