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Effect of current density and electrolyte pH on microstructure of Mn-Cu electroplated coatings

机译:电流密度和电解液pH值对Mn-Cu电镀层组织的影响

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In the present study 304 stainless steel (SS) was electrochemically plated with nanocrystalline Mn-Cu alloy coatings from a bath containing ammonium sulfate. The electrochemical investigation of Mn-Cu electrodeposited films was managed by potentiodynamic scans and galvanostatic experiments. The effect of pH and current density on the microstructure, cathodic efficiency, crystallographic structure, and chemical composition of the deposits were characterized by means of scanning electron microscopy (SEM), weight gain measurements, X-ray diffraction (XRD), and energy dispersive X-ray spectrometry (EDS), respectively. The results showed that Mn-Cu coatings obtained at low current density contain a large amount of Cu and a heterogeneous microstructure, while at high current density uniform, compact, and amorphous coatings with a small amount of Cu was obtained. The XRD and SEM analyses of the films showed that the deposition of Mn-Cu alloy is more affected by the current density than electrolyte pH. However, the results did not show any specific changes in the grain size of the coatings with variation of current densities. The results indicated that Cu co-deposition delayed the phase transformation of as-deposited ductile γ-Mn to the brittle and hard α-Mn.
机译:在本研究中,从含有硫酸铵的镀液中对304不锈钢(SS)进行了电化学镀纳米晶Mn-Cu合金涂层。 Mn-Cu电沉积膜的电化学研究通过电位动力学扫描和恒电流实验进行管理。 pH和电流密度对沉积物的微观结构,阴极效率,晶体结构和化学成分的影响通过扫描电子显微镜(SEM),重量增加测量,X射线衍射(XRD)和能量分散来表征分别是X射线光谱法(EDS)。结果表明,在低电流密度下获得的Mn-Cu涂层含有大量的Cu和不均匀的微观结构,而在高电流密度下可获得均匀,致密和少量Cu的无定形涂层。薄膜的XRD和SEM分析表明,电流密度比电解液pH值对Mn-Cu合金的沉积影响更大。但是,结果没有显示出随电流密度的变化,涂层晶粒尺寸的任何特定变化。结果表明,Cu共沉积延迟了沉积态的韧性γ-Mn向脆性和硬质α-Mn的相变。

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