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The characterisation of second phases in the Zr-Nb and Zr-Nb-Sn-Fe alloys: A critical review

机译:ZR-NB和ZR-NB-SN-Fe合金中的第二阶段的表征:临界评论

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摘要

The nature and evolution of the Fe environment in Zr-Nb and Zr-Nb-Sn-Fe systems is essential to alloy performance during corrosion, hardening and irradiation-induced growth. Unfortunately, there is ambiguity in the literature regarding the characterisation of secondary phases in these systems. The presence, or not, of Fe in beta-Nb phase has been a source of disagreement. In ternary ZrNbFe intermetallics, identical compositions have been designated as Zr(Nb,Fe)(2) or (Zr,Nb)(3)Fe. We show that while Zr(Nb,Fe)(2) is commonly reported, it is not always justified. The cubic phase (Zr,Nb)(2)Fe is easily identified, but its composition is more variable after low temperature heat treatments. We demonstrate the need for correlative approaches in the assessment of phase composition, crystallography and local Fe environment under different heat treatment regimes. Irradiation effects allow us to draw clues regarding phase designation, but there is diverse behaviour under irradiation due to initial phase composition, irradiation dose rate and temperature. (C) 2018 Elsevier B.V. All rights reserved.
机译:ZR-NB和ZR-NB-SN-FE系统中Fe环境的性质和演变对于腐蚀,硬化和辐射诱导的生长期间对合金性能至关重要。不幸的是,文献中存在关于这些系统中的二次阶段的表征的歧义。 Beta-NB阶段的Fe存在于此的存在是分歧的源泉。在三元ZrNBFE金属间金属间金属间化合物中,相同的组合物被称为Zr(Nb,Fe)(2)或(Zr,Nb)(3)Fe。我们展示虽然报道Zr(NB,Fe)(2),但并不总是合理的。容易鉴定立方相(Zr,Nb)(2)Fe,但在低温热处理后,其组合物更可变。我们证明需要在不同热处理制度下评估相组成,晶体学和局部Fe环境的相关方法。辐照效应使我们能够绘制关于相位指定的线索,但由于初始相成分,照射剂量率和温度,照射下存在多种行为。 (c)2018年elestvier b.v.保留所有权利。

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