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Influence of steel substrate grain size on phase layers growth kinetics and thickness of zinc hot dipped steel sheets

机译:钢衬底粒度对锌热浸钢板相产动力学和厚度的影响

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It has been suggested that the grain size of the substrate steel sheet affects the coating formation kinetics and growth rate in the hot dip galvanising process. In the present study, two low carbon steel samples with different grain sizes of 5 and 40 mum, were prepared and hot dipped for different immersion times from 5 to 40 s to examine the effects of steel grain size on phase layers thickness and growth rate. The microstructure of the coatings was studied using scanning electron microscopy and energy dispersive spectroscopy analysis. It was observed that due to the absence of an inhibition layer, four phase layers were obtained after galvanising. The values of growth rate time constant n were determined for the phase layers. It was concluded that a smaller steel grain size would result in relatively thicker coatings. Furthermore, it was deduced that the same possible mechanism- that controls zeta and eta layer growth would also control the total coating layer growth.
机译:已经提出,基材钢板的晶粒尺寸影响了热浸镀锌过程中的涂层形成动力学和生长速率。 在本研究中,制备两个具有不同晶粒尺寸为5和40毫米的低碳钢样品,并热浸入不同的浸入时间5至40秒,以检查钢粒尺寸对相层厚度和生长速率的影响。 使用扫描电子显微镜和能量分散光谱分析研究涂层的微观结构。 观察到,由于不存在抑制层,在镀锌后获得四个相层。 为相层测定生长速率时间常数N的值。 得出结论,较小的钢粒尺寸会导致相对较厚的涂层。 此外,推导出相同的可能机制 - 控制Zeta和ETA层生长也将控制总涂层生长。

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