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Sn含量對(duì)Zr-Sn-0.2Fe-0.1Cr合金高溫蒸汽氧化行為的影響
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1.上海大學(xué)材料研究所;2.中廣核研究院有限公司

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國家自然科學(xué)基金項(xiàng)目(51871141)


Effect of Sn Content on High Temperature Steam Oxidation Behavior of Zr-Sn-0.2Fe-0.1Cr Alloys
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1.The Key Laboratory for Advance Micro-Analysis,Shanghai University;2.China Nuclear Power Technology Research Institute Co., Ltd

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    摘要:

    鋯合金的高溫蒸汽氧化行為是失水事故下需要重點(diǎn)關(guān)注的問題之一。為了研究Sn對(duì)鋯合金高溫蒸汽氧化行為的影響,開展了不同Sn含量的SH12(Zr-0.75Sn-0.2Fe-0.1Cr,wt.%)和Zr-4(Zr-1.5Sn-0.2Fe-0.1Cr)合金在模擬失水事故工況下1000,1050,1100和1200 ℃的高溫蒸汽氧化試驗(yàn)。采用光學(xué)顯微鏡、電子探針、顯微硬度計(jì)分析了氧化樣品的顯微組織以及氧化前后樣品的顯微硬度。結(jié)果表明:低Sn的SH12比高Sn的Zr-4合金的抗高溫蒸汽氧化性能更好,這說明降低Sn含量可以改善鋯合金的抗高溫蒸汽氧化性能。氧化前,SH12合金的顯微硬度低于Zr-4合金,而氧化后SH12合金基體的顯微硬度明顯高于Zr-4合金,與氧化后SH12合金基體中的氧含量高于Zr-4合金的結(jié)果相吻合,這說明Sn有抑制氧在Zr基體中擴(kuò)散的作用。通過第一性原理計(jì)算,發(fā)現(xiàn)Sn容易與O結(jié)合,從而抑制了O在鋯基體中的擴(kuò)散,這合理解釋了氧化后SH12合金中的氧含量比Zr-4合金高的原因。

    Abstract:

    The high-temperature steam oxidation behavior of zirconium alloys is one of the issues that need to be focused on under loss of coolant accident (LOCA). To study the effect of Sn on the high-temperature steam oxidation behavior of zirconium alloys, SH12(Zr-0.75Sn-0.2Fe-0.1Cr, wt.%) and Zr-4(Zr-1.5Sn-0.2Fe-0.1Cr) alloys with different Sn contents were used for high-temperature steam oxidation tests at 1000, 1050, 1100 and 1200 ℃, under simulated LOCA conditions. The microstructure of the oxidized samples and the microhardness of the samples before and after oxidation were analyzed by optical microscope, electron probe microanalyzer, and microhardness tester. The results show that SH12 with low Sn content has better oxidation resistance to high-temperature steam than Zr-4 alloy with high Sn. This indicates that reducing the Sn content can improve the oxidation resistance to high temperature steam of zirconium alloys. Before oxidation, the microhardness of the SH12 alloy is lower than that of the Zr-4 alloy, while after oxidation the microhardness of the SH12 alloy matrix is significantly higher than that of the Zr-4 alloy, which is consistent with the result that the oxygen content in the matrix of the SH12 alloy is higher than that of the Zr-4 alloy after oxidation. This indicates that Sn has the effect of inhibiting the diffusion of oxygen in the Zr matrix. Through first-principles calculations, it is found that Sn is easily combined with O, thereby inhibiting O diffusion in the zirconium matrix, which reasonably explains the higher oxygen content in the oxidized SH12 alloy compared to the Zr-4 alloy.

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引用本文

查學(xué)鵬,趙晨曦,謝耀平,高長(zhǎng)源,胡麗娟,姚美意. Sn含量對(duì)Zr-Sn-0.2Fe-0.1Cr合金高溫蒸汽氧化行為的影響[J].稀有金屬材料與工程,2023,52(3):1062~1072.[ZHA Xuepeng, ZHAO Chenxi, XIE Yaoping, GAO Changyuan, HU Lijuan, YAO Meiyi. Effect of Sn Content on High Temperature Steam Oxidation Behavior of Zr-Sn-0.2Fe-0.1Cr Alloys[J]. Rare Metal Materials and Engineering,2023,52(3):1062~1072.]
DOI:10.12442/j. issn.1002-185X.20220122

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  • 收稿日期:2022-02-19
  • 最后修改日期:2022-05-12
  • 錄用日期:2022-05-23
  • 在線發(fā)布日期: 2023-04-07
  • 出版日期: 2023-03-24