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添加Nb对Zr-0.75Sn-0.35Fe-0.15Cr合金高温蒸汽氧化行为的影响
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上海大学材料研究所

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国家自然科学基金项目(51871141)


Effect of adding Nb on high temperature steam oxidation behavior of Zr-0.75Sn-0.35Fe-0.15Cr alloy
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The Key Laboratory for Advance Micro-Analysis,Shanghai University

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    摘要:

    本文熔炼了Zr-0.75Sn-0.35Fe-0.15Cr-xNb(x=0、0.15、0.50、1.00,wt.%)合金,并制备成板状样品。采用TG-DSC研究了4种锆合金在模拟LOCA工况下800~1200 ℃的抗高温蒸汽氧化行为和相变行为,利用金相显微镜分析了氧化样品横截面的显微组织。结果表明,4种锆合金的抗高温蒸汽氧化性能并没有随Nb含量的变化呈单一的变化规律,其氧化动力学大多为线性规律,只有添加0.5%Nb的合金在1000 ℃的氧化动力学发生了两次转折,由线性规律转变为幂指数规律再转变为线性规律;锆合金中基体的相转变温度随着Nb含量的增加而降低,而其氧化物的相变行为并没有随Nb含量的变化呈单一变化趋势,这说明Nb含量对锆合金氧化物的相变行为的影响比对合金相变行为的影响复杂。氧化温度为800 ℃、1000 ℃和1200 ℃时,氧化样品截面组织分别为:ZrO2和α-Zr(O),ZrO2、α-Zr(O)和原β-Zr层,ZrO2和α-Zr(O); 800 ℃氧化样品截面各层组织的厚度占比基本不随Nb含量发生变化;1000 ℃氧化样品截面α-Zr(O)层的厚度占比随Nb含量的增加而增大,原β-Zr层的厚度占比正好相反,出现了指状侵入的α-Zr(O)。1200 ℃氧化样品截面显微组织厚度占比随Nb含量的变化比较复杂。这说明Nb有促进β→α-Zr(O)转变的作用。

    Abstract:

    Zr-0.75Sn-0.35Fe-0.15Cr-xNb (x=0, 0.15, 0.50, 1.00, wt.%) alloys were smelt and parpared to plate specimens a in this paper. The high temperature steam oxidation behavior of four zirconium alloys at 800~1200 ℃ under simulated LOCA conditions was studied, and the cross-sectional microstructure was analyzed by metallographic microscope. The results show that the gain weight after oxidation of the four zirconium alloys does not have consisitent trend with the change of Nb content, and the oxidation kinetics is mostly linear. Only the oxidation kinetics of the alloy with 0.5% Nb at 1000 ℃ has two transitions, that is, from linear law to power exponential law and then to linear law. The transformation temperature of the matrix in zirconium alloy decreases with the increase of Nb content, while the phase transition behavior of its oxides does not show consisitent trend with the change of Nb content, it shows that the influence of Nb content on the phase transformation behavior of zirconium alloy and oxide is more complicated than that of the alloy. When the oxidation temperature is 800 ℃, 1000 ℃ and 1200 ℃, the cross-sectional structure of the oxidized sample is: ZrO2 and α-Zr(O), ZrO2, α-Zr(O) and prior β-Zr layer, ZrO2 and α-Zr(O). The thickness ratio of each layer of the cross section of the 800 ℃ oxidized sample does not change with the Nb content. The proportion of the thickness of the α-Zr(O) layer in the cross-section of the oxidized sample at 1000 ℃ increases with the increase of the Nb content. The proportion of the thickness of the prior β-Zr layer is just the opposite, and there is a finger-like intrusion of α-Zr(O). The ratio of the thickness of the microstructure of the cross-section of the oxidized sample at 1200 ℃ varies with the Nb content more complicated. It shows that Nb can promote the transformation of β→α-Zr(O).

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张佳楠,姚美意.添加Nb对Zr-0.75Sn-0.35Fe-0.15Cr合金高温蒸汽氧化行为的影响[J].稀有金属材料与工程,2022,51(5):1837~1844.[Zhang Jianan, Yao Meiyi. Effect of adding Nb on high temperature steam oxidation behavior of Zr-0.75Sn-0.35Fe-0.15Cr alloy[J]. Rare Metal Materials and Engineering,2022,51(5):1837~1844.]
DOI:10.12442/j. issn.1002-185X.20210417

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  • 收稿日期:2021-05-13
  • 最后修改日期:2021-07-04
  • 录用日期:2021-07-12
  • 在线发布日期: 2022-06-09
  • 出版日期: 2022-05-30