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The investigation of thin protecting layers on roughened galvanized steel surfaces produced by different coating methods

机译:不同涂层方法在粗糙镀锌钢表面上形成薄保护层的研究

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Protective, chromate substitute thin layers on roughened galvanized surfaces produced at OCAS (Arcelor, Belgium) were characterized and compared using Scanning Electron Microscopy (SEM+EDS), Atomic Force Microscopy (AFM), Nanoindentation and X-ray Photoemission Spectroscopy (XPS). EDX maps, line scans and point analyses obtained at various places of the surfaces have shown differences between the CVD and silane nanolayers in the matter of thickness distribution and composition. At cross-section specimens the thickness of the layers could be shown. The hardness differences caused by layer thickness variations are hard to follow by nanoindentation as the penetration depth of the indenter is much larger than the thickness of the coatings. XPS measurements can distinguish between the chemical states of silicon in CVD and silane coatings.
机译:使用扫描电子显微镜(SEM + EDS),原子力显微镜(AFM),纳米压痕和X射线光电子能谱(XPS)对OCAS(比利时Arcelor)生产的粗糙镀锌表面上的保护性铬酸盐替代薄层进行了表征和比较。在表面的不同位置获得的EDX图,线扫描和点分析表明,在厚度分布和组成方面,CVD和硅烷纳米层之间存在差异。在横截面样品上,可以显示层的厚度。由于压头的穿透深度远大于涂层的厚度,因此纳米压痕很难跟踪由层厚度变化引起的硬度差。 XPS测量可以区分CVD和硅烷涂层中硅的化学状态。

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