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Oxidation behavior of electroless Ni-P, Ni-B and Ni-W-B coatings deposited on steel substrates

机译:在钢基材上沉积的化学镀Ni-P,Ni-B和Ni-W-B涂层的氧化行为

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High temperature oxidation behaviors of electroless Ni-P, Ni-B and Ni-W-B coatings that are deposited on mild steel substrates were investigated in a temperature range of 600-800 degrees C. Oxide films formed on the surfaces of the coated samples were characterized by X-ray diffraction analyses. Oxidation behaviors of the coatings were evaluated by monitoring the oxide character and iron diffusion through the structure by glow discharge optical emission spectroscopy (GDOES). The results indicated that oxidation properties of the coated steel depend not only on the coating itself, but also on the diffusion and interdiffusion processes, which take place between the substrate and the deposit. For Ni-P deposited steel, iron started to take part in the oxide structure during treatment at 700 degrees C, resulting in a loss of protective character of the oxide. Depletion of boron within the coating and formation of nickel borates were observed for B containing deposits. Diffusion of iron to the surface also took place at 700 degrees C for Ni-B coatings, but not as drastic as for Ni-P. Oxidation behavior of Ni-W-B coatings was similar to Ni-B coatings in general. However, the presence of W decreased the diffusion of iron to the surface and delayed the formation of iron oxides. At 800 degrees C, all three coatings started to degrade due to higher oxidation rate and iron diffusion to the surface. The results of this study showed that it is possible to increase the oxidation resistance of electroless nickel coatings by alloying them with W. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了在600-800摄氏度的温度范围内沉积在低碳钢基材上的化学镀Ni-P,Ni-B和Ni-WB涂层的高温氧化行为。表征了在镀膜样品表面形成的氧化膜通过X射线衍射分析。通过用辉光放电光发射光谱法(GDOES)监测氧化物的特性和铁在结构中的扩散来评估涂层的氧化行为。结果表明,涂​​层钢的氧化性能不仅取决于涂层本身,还取决于发生在基材和沉积物之间的扩散和互扩散过程。对于Ni-P沉积钢,铁在700℃的处理过程中开始参与氧化物结构,导致氧化物的保护性丧失。对于含B的沉积物,观察到涂层中硼的耗尽和硼酸镍的形成。对于Ni-B涂层,铁在表面的扩散也发生在700摄氏度,但不如Ni-P剧烈。通常,Ni-W-B涂层的氧化行为与Ni-B涂层相似。然而,W的存在减少了铁向表面的扩散并延迟了氧化铁的形成。在800摄氏度时,由于较高的氧化速率和铁向表面的扩散,所有这三个涂层开始降解。这项研究的结果表明,通过与W合金化可以增加化学镀镍涂层的抗氧化性。(C)2015 Elsevier B.V.保留所有权利。

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