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Development and characterization of Ni and Ni-Graphene coatings obtained by electrodeposition on API 5L X80 steel

机译:通过电沉积在API 5L X80钢上获得Ni和Ni-石墨烯涂层的研制和表征

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摘要

The aim of the present work was to develop and characterize nanocomposite coatings of Ni and Ni-Graphene applied on API 5L X80 steel surface, using the electrodeposition process, to obtain better anticorrosive properties. Test specimens of dimensions of 20x20x3 mm were submitted to metallographic cleaning and preparation, for later deposition of the coatings. For the electrodeposition process, a nickel-based bath containing sodium dodecyl sulfate (SDS) was used as the surfactant. To obtain the Ni-Graphene coatings, graphene particles (0.2 g/L) were added to the electrolytic bath. The electrodeposits obtained were characterized by X-ray Diffraction (XRD) and Scanning Electron Microscopy (SEM). The insertion of graphene to the coating promoted the formation of deposits with more refined grains, and with a well-defined crystal growth direction. Deposits with overlapping lamellar structures were observed and associated to the graphene incorporated into the Ni matrix. The deposition of graphene influenced the preferential orientation of the grains during the electrodeposition process, with the plane (200) being identified as the preferred orientation for the Ni-Graphene nanocomposite. The Ni-Graphene coating obtained better corrosion performance in comparing to the coating of pure Ni and the base metal, presenting a higher corrosion potential value (Ecorr), lower corrosion current density (icorr) value and higher impedance modulus (|Z|).
机译:目前工作的目的是在API 5L X80钢表面上施加在API 5L X80钢表面上的Ni和Ni-石墨烯的纳米复合涂层,获得更好的防腐蚀性能。将20x20x3mm的尺寸的试样提交给金相清洁和制备,以便后来沉积涂层。对于电沉积方法,使用含有十二烷基硫酸钠(SDS)的镍基浴作为表面活性剂。为了获得Ni-石墨烯涂层,将石墨烯颗粒(0.2g / L)加入到电解浴中。通过X射线衍射(XRD)和扫描电子显微镜(SEM)表征获得的电沉积。将石墨烯的插入涂层促进了具有更精细的晶粒的沉积物的形成,并且具有明确界定的晶体生长方向。观察到具有重叠层状结构的沉积物,并与掺入Ni基质中的石墨烯相关联。石墨烯的沉积影响了电沉积过程中颗粒的优先取向,平面(200)被鉴定为Ni-石墨烯纳米复合材料的优选取向。 Ni-石墨烯涂层在比较纯Ni和基础金属的涂层时获得更好的腐蚀性性能,呈现更高的腐蚀电位值(Ecorr),较低的腐蚀电流密度(ICorr)值和更高阻抗模量(| Z |)。

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