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首页> 外文期刊>Transactions of the Japan Society for Computational Engineering and Science >Effect of Electrolyte Temperature on Properties of Nickel Film Coated onto Copper Alloy Fabricated by Electroplating
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Effect of Electrolyte Temperature on Properties of Nickel Film Coated onto Copper Alloy Fabricated by Electroplating

机译:电解液对电镀制备铜合金镍膜性能的影响

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Nickel and nickel-based alloys as protective coatings are used in various applications where the corrosion resistance is required. They have been widely used in automotive, aircraft, marine, nuclear power plant, oil, and gas industries. This work aims at fabricating nickel layers on copper alloy substrates through electroplating techniques with different electrolyte temperatures (20, 30, and 50°C). The effect of the electrolyte temperature on the electroplated nickel layers was investigated by using a field emission scanning electron microscope, an X-ray diffraction (XRD), a potentiostat, a camera, and a microhardness test. It is expected that electrolyte temperatures could influence the surface morphology, crystallographic orientation, the electrochemical behavior, wettability, and the hardness of the nickel layers. The surface morphology shows differences in terms of the roughness and the grain size for various samples. Raising the electrolyte temperature from 20 to 50°C results in the increase of the water contact angles and the decrease in the hardness of the Ni layers, while the crystallite size has a maximum value at 30°C. Moreover, the different XRD intensity from the (111) planes shows a significant influence on the corrosion resistance.
机译:作为保护涂层的镍和镍基合金用于各种应用中,在需要耐腐蚀性。它们已广泛应用于汽车,飞机,海洋,核电厂,石油和天然气行业。该工作旨在通过电镀技术(20,30和50℃)的电镀技术来制造铜合金基板上的镍层。通过使用场发射扫描电子显微镜,X射线衍射(XRD),恒温仪,照相机和显微硬度测试,研究了电解液对电镀镍层对电镀镍层的影响。预期电解质温度可能影响表面形态,结晶取向,电化学行为,润湿性和镍层的硬度。表面形态学表明了各种样品的粗糙度和晶粒尺寸方面的差异。将电解质温度从20℃升高,导致水接触角的增加和Ni层的硬度降低,而微晶尺寸在30℃下具有最大值。此外,来自(111)平面的不同XRD强度显示出对耐腐蚀性的显着影响。

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