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Surface vitrification of iron and FeCuNbSiB alloy irradiated by intense pulsed ion beam

机译:强脉冲离子束辐照铁和FeCuNbSiB合金的表面玻璃化

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Intense pulsed ion beam (IPIB) is an emerging flash heat source for surface modification of metal. In IPIB treatment, the formation of amorphous phase is always considered as a significant mechanism to modify and improve the surface properties of target, due to the excellent mechanical performance of amorphous alloy. Thus, the understanding of surface vitrification process and its conditions induced by IPIB irradiation is of great value for its application. In this work, pure iron and FeCuNbSiB alloy were chosen as target for investigation in term of the difference of their glass forming ability (GFA). XRD results showed that the measurable amorphous layer cannot be formed in the surface of both of these two alloys after IPIB irradiation. Thermal field and solute diffusion were studied using the finite element method. It is indicated that during the IPIB irradiation, the molten surface layer of FeCuNbSiB alloy is heterogeneous, and thus it has much lower GFA than the Fe-Cu-Nb-Si-B mixed system. It is proposed that the sufficient mixture of elements in the molten surface layer is indispensable for surface vitrification. In addition, the formation of craters and cracks on the surface will be harmful to form amorphous layer.
机译:强脉冲离子束(IPIB)是用于金属表面改性的新兴闪速热源。在IPIB处理中,由于非晶态合金的优异机械性能,非晶态相的形成一直被认为是修饰和改善靶材表面性能的重要机制。因此,了解IPIB辐照引起的表面玻璃化过程及其条件具有重要的应用价值。在这项工作中,根据玻璃形成能力(GFA)的差异,选择纯铁和FeCuNbSiB合金作为研究对象。 XRD结果表明,在IPIB辐照后,这两种合金的表面均无法形成可测量的非晶层。使用有限元方法研究了热场和溶质扩散。结果表明,在IPIB辐照过程中,FeCuNbSiB合金的熔融表面层是不均匀的,因此其GFA比Fe-Cu-Nb-Si-B混合体系低得多。建议在熔融表面层中元素的充分混合对于表面玻璃化是必不可少的。另外,在表面上形成的凹坑和裂纹将不利于形成非晶层。

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