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Diffusion Behavior of Aluminum Atoms in Hot Dip RE-Aluminizing

机译:铝原子在热浸镀铝中的扩散行为

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The pure aluminized layer and RE-aluminized layer on industrial pure iron were prepared by hot dip aluminizing method, and the thickness and composition of the layer were investigated by means of scanning electronic microscopy (SEM) and energy dispersive spectroscopy (EDS), respectively. The results showed that the RE was permeated into the alloy layer after hot dip RE-aluminizing and the thickness of the alloy layer increases by about 30% as against hot dip pure aluminizing. The binding energy between the vacancy and aluminum atom was calculated. According to the energy condition of the solute-vacancy complex diffusion, it points out that the solute-vacancy complex diffusion is the main mechanism of aluminum atoms diffusion in hot dip RE-aluminizing and the main reason why the thickness of alloy layer increases after hot dip RE-aluminizing.
机译:采用热浸镀铝法制备了工业纯铁上的纯铝层和稀土铝层,并分别用扫描电子显微镜(SEM)和能谱仪(EDS)研究了铝层的厚度和成分。结果表明,在热浸RE-铝化之后,RE渗透到合金层中,并且与热浸纯铝化相比,合金层的厚度增加了约30%。计算了空位与铝原子之间的结合能。根据溶质-空位复合物扩散的能量条件,指出溶质-空位复合物扩散是热浸RE-铝化过程中铝原子扩散的主要机理,也是热后合金层厚度增加的主要原因。浸RE-铝化。

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