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Microstructural evolution of P92 ferritic/martensitic steel under argon ion irradiation

机译:氩离子辐照下P92铁素体/马氏体钢的组织演变

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Microstructural evolution of P92 ferritic/martensitic steel irradiated by Ar~+ ion beams at doses from 0.6 to 230 displacements per atom (dpa) at room temperature was investigated with conventional transmission electron microscope technique. Selected-area electron diffraction combined with bright-field and dark-field contrast image indicated that carbide/ matrix interfaces were more easily damaged. The carbide peripheries became partly amorphous at irradiation dose of 2.3 dpa and were almost complete amorphous at the dose of 11.5 dpa. The small carbides would re-precipitate in matrices at 34.5 dpa. Energy dispersive X-ray analysis revealed that segregation of Cr and W and depletion of Fe in carbides occurred under irradiation. With the irradiation dose increasing, the irradiation induced segregation and depletion became more severe, which would influence mechanical properties of the steel.
机译:采用常规的透射电子显微镜技术研究了在室温下,Ar〜+离子束辐照的P92铁素体/马氏体钢在0.6至230位移/原子(dpa)剂量下的组织演变。选择性区域电子衍射与明场和暗场对比图像相结合表明,碳化物/基体界面更容易受到破坏。在2.3 dpa的辐照剂量下,碳化物外围部分变为非晶态,而在11.5 dpa的辐照剂量下,碳化物外围几乎完全变为非晶态。在34.5 dpa时,小的碳化物会在基体中再沉淀。能量色散X射线分析表明,在辐照下会发生碳化物中Cr和W的偏析和Fe的耗尽。随着辐照剂量的增加,辐照引起的偏析和耗竭变得更加严重,这将影响钢的机械性能。

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