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Influences of Si on corrosion of Fe-B alloy in liquid zinc

机译:Si对Fe-B合金在液态锌中腐蚀的影响

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Influences of silicon content on the microstructure and corrosion resistance of a Fe-2.5 wt-%B alloy have been investigated by using scanning electron microscopy, X-ray diffraction and energy dispersive spectroscopy. Si can change the microstructure from hypereutectic to eutectic and furthermore, enhance the corrosion resistance of the alloy in molten zinc. The high corrosion resistance of the alloy was mainly attributed to the eutectic phase increase and solubility of Si in α phase enhancement. The corrosion of these alloys in liquid zinc was controlled by the diffusion mechanism. The reaction products are FeZn_(6.67), Fe_5SiB_2 and FeSi. The reaction layer further prevents the diffusion of zinc atoms into the base material and delays the reaction between the substrate and the molten zinc efficiently.
机译:通过使用扫描电子显微镜,X射线衍射和能量色散光谱研究了硅含量对Fe-2.5 wt%B合金的显微组织和耐蚀性的影响。 Si可以将微观结构从过共晶转变为共晶,并且还可以提高合金在熔融锌中的耐蚀性。合金的高耐腐蚀性主要归因于共晶相的增加和Si在α相增强中的溶解度。这些合金在液态锌中的腐蚀是通过扩散机制控制的。反应产物是FeZn_(6.67),Fe_5SiB_2和FeSi。反应层进一步防止锌原子扩散到基材中,并有效地延迟了基材和熔融锌之间的反应。

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