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铀表面Cu、Ni-P/Cu镀层研究
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作者 鲜晓斌 吕学超 +3 位作者 刘清和 李科学 唐凯 刘卫华 《表面技术》 EI CAS CSCD 北大核心 2003年第5期16-19,共4页
 用循环Ar+轰击 磁控溅射离子镀(MSIP)和化学镀分别在U表面上沉积Cu、Ni P/Cu,并采用俄歇电子能谱仪(SAM)、扫描透射电镜(STEM)、电化学实验,研究了其表面、剖面形貌和耐蚀性能,以及U基和镀层界面。结果表明:U上循环Ar+轰击 磁控溅射...  用循环Ar+轰击 磁控溅射离子镀(MSIP)和化学镀分别在U表面上沉积Cu、Ni P/Cu,并采用俄歇电子能谱仪(SAM)、扫描透射电镜(STEM)、电化学实验,研究了其表面、剖面形貌和耐蚀性能,以及U基和镀层界面。结果表明:U上循环Ar+轰击 磁控溅射离子镀Cu结晶细密,界面存在较宽的原子共混区,U表面先溅射沉积Cu镀层,再化学镀非晶态Ni P镀层,能够有效地改善镀层的结合强度。 展开更多
关键词 ni-p/cu镀层 组织结构 耐蚀性能
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Corrosion properties of stainless steel 316L/Ni-Cu-P coatings in warm acidic solution
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作者 方信贤 周衡志 薛亚军 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第8期2594-2600,共7页
In order to improve corrosion resistance of stainless steel 316L in warm acidic solution, Ni?Cu?P coatings with high copper and phosphorus contents were deposited onto stainless steel 316L substrates via electroless... In order to improve corrosion resistance of stainless steel 316L in warm acidic solution, Ni?Cu?P coatings with high copper and phosphorus contents were deposited onto stainless steel 316L substrates via electroless plating. The structure of the film and its resistance to corrosion in a warm acidic environment were investigated using scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), X-ray diffraction spectrometry (XRD), polarization curves, electrochemical impedance spectroscopy (EIS), and dipping corrosion tests, respectively. The results demonstrate that Ni?Cu?P coatings consist of two types of nodules, which are 19.98% Cu and 39.17% Cu (mass fraction) respectively. The corrosion resistance of the 316L substrate when subjected to a warm acidic solution is significantly improved by the addition of the new type of the Ni?Cu?P coating. The as-plated coatings demonstrate better corrosion resistance than annealed coatings. As-plated coatings and those annealed at 673 K are found to corrode selectively, while pitting is observed to be the main corrosion mechanism of coatings annealed at 773 and 873 K. 展开更多
关键词 Ni-cu-P coating stainless steel 316L corrosion resistance corrosion mechanism warm acidic solution
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