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Improved corrosion resistance through microstructural modifications induced by codepositing SiC-particles with electrolytic nickel

机译:通过将SiC颗粒与电解镍共沉积而引起的微结构改性而提高了耐腐蚀性

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Micron and submicron-sized SiC-particles (5 and 0.3 μm respectively) were codeposited with nickel from a Watts electrolyte. The Ni-SiC composite coatings showed a better corrosion resistance in a 0.6 M NaCl solution than nickel electrodeposited under the same conditions. The corrosion rate of Ni-SiC decreases by two orders of magnitude with respect to pure Ni coatings. This improved corrosion resistance is quite independent of the size and amount of embedded particles, except for the smallest SiC-particles investigated. In that case, the pitting corrosion potential shifts to more noble values indicating a notable reduction of the localized corrosion susceptibility. This improved corrosion resistance of Ni-SiC coatings containing submicrometric SiC-particles is linked to a change in grain morphology and texture of the coatings. That morphology evolves from columnar grains to small and equiaxed grains.
机译:将微米和亚微米级的SiC颗粒(分别为5和0.3μm)与镍从瓦特电解质中共沉积。与在相同条件下电沉积的镍相比,Ni-SiC复合涂层在0.6 M NaCl溶液中显示出更好的耐腐蚀性。相对于纯镍涂层,Ni-SiC的腐蚀速率降低了两个数量级。除研究的最小SiC颗粒外,这种改善的耐腐蚀性完全与嵌入颗粒的大小和数量无关。在这种情况下,点腐蚀电位移至更高的高值,表明局部腐蚀敏感性明显降低。包含亚微米级SiC颗粒的Ni-SiC涂层耐腐蚀性的提高与涂层的晶粒形态和织构的变化有关。形态从柱状晶粒演变为等轴晶粒。

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