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The Influence of A Mo Addition on the Interfacial Morphologies and Corrosion Resistances of Novel Fe-Cr-B Alloys Immersed in Molten Aluminum

机译:钼添加对熔铝中新型Fe-Cr-B合金界面形态和耐蚀性的影响

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摘要

The influence of a Mo addition on the interfacial morphologies and corrosion resistances of novel Fe-Cr-B alloys in molten aluminum at 750 °C was systematically investigated using scanning electron microscopy, X-ray diffractometer, electron probe microanalysis, and transmission electron microscopy. The results indicated that Mo could not only strengthen the matrix but also facilitate the formation of borides. Furthermore, the microstructures of Mo-rich M2B boride changed from a local eutectic net-like structure to a typical coarse dendritic structure and a blocky hypereutectic structure with increasing Mo addition. This was true of the blocky Mo-rich M2B boride, rod-like Cr-rich M2B boride and the corrosion products, which had a synergistic effect on retarding of the diffusion of molten aluminum. Notably, the corrosion resistance of the Fe-Cr-B-Mo alloy, with an 8.3 wt.% Mo addition, was 3.8 times higher than that of H13 steel.
机译:使用扫描电子显微镜,X射线衍射仪,电子探针显微分析和透射电子显微镜系统地研究了Mo的添加对新型Fe-Cr-B合金在750°C熔融铝中的界面形态和耐蚀性的影响。结果表明,钼不仅可以增强基体,而且可以促进硼化物的形成。此外,随着Mo添加量的增加,富Mo的M2B硼化物的微观结构从局部的共晶网状结构变为典型的粗枝状结构和块状的过共晶结构。块状的富含钼的M2B硼化物,棒状的富含Cr的M2B硼化物和腐蚀产物都是如此,它们对延缓熔融铝的扩散具有协同作用。值得注意的是,添加了8.3重量%的Mo的Fe-Cr-B-Mo合金的耐腐蚀性是H13钢的3.8倍。

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