Effect of Cu on the corrosion resistance of a NiMo2B2-Dispersed Ni-based alloy

Guofeng Zhang, M. Morishita, M. Inada, K. Kôyama
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引用次数: 4

Abstract

Corrosion of NiMo 2 B 2 -dispersed Ni-based alloy containing Co, Mn, Cr, Fe or Cu was examined by measuring the mass loss and the corrosion potential in 6 mass%HNO 3 aqueous solution and by metallography. The corrosion was accelerated by addition of Co or Mn while it was retarded by addition of Cr, Fe or Cu. In particular, the addition of Cu greatly improved the corrosion resistance. The corrosion proceeded by a mechanism in which the Ni-matrix phase worked as anode while the NiMo 2 B 2 phase worked as cathode. The addition of Cu shifted the corrosion potential of the Ni-matrix phase to the noble side by about 15 mV, and consequently the difference in the corrosion potential between the Ni-matrix phase and the NiMo 2 B 2 phase decreased, As a result the preferential corrosion of the Ni-matrix phase was extremely retarded.
Cu对nimo2b2分散镍基合金耐蚀性的影响
采用质量损失、腐蚀电位测定和金相法研究了含Co、Mn、Cr、Fe或Cu的nimo2b2分散镍基合金在6质量% hno3水溶液中的腐蚀。Co、Mn的加入加速了腐蚀,Cr、Fe、Cu的加入延缓了腐蚀。特别是Cu的加入大大提高了耐蚀性。腐蚀过程以ni基相为阳极,nimo2b2相为阴极的机制进行。Cu的加入使ni基相的腐蚀电位向贵金属侧移动了约15 mV,从而减小了ni基相与nimo2b2相的腐蚀电位差,极大地延缓了ni基相的优先腐蚀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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