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Corrosion behavior of Fe-based candidate accident tolerant fuel cladding alloys in spent fuel pool environment - Effect of prior corrosion

机译:Fe的候选事故耐腐蚀燃料包层合金在燃料池环境中的腐蚀行为 - 腐蚀的效果

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摘要

The corrosion behavior of Fe-based candidate accident tolerant fuel (ATF) cladding alloys, such as FeCrAl and FeNiCrAl alloys, in simulated spent fuel pool (SFP) water was investigated. Specimens with different prior corrosion histories, such as fresh, normal-serviced (immersed in simulated pressurized water reactor (PWR) environment), and accident-suffered (PWR water immersion followed by high-temperature steam exposure) were used. All Fe-based alloys with various prior corrosion histories show weight loss during the SFP immersion test. In the fresh and normal-serviced conditions, all alloys experience relatively small weight loss in SFP water. In the accident-suffered condition, low-Al FeNiCrAl alloy shows large weight loss. Overall, high-Al FeNiCrAl alloy shows comparable corrosion resistance to FeCrAl alloy in SFP water for all prior corrosion histories. The corrosion behavior of the alloys in SFP water is significantly affected by the pre-formed oxides, such that Cr2O3, Al2O3, Fe-rich and Cr-rich spinel oxides offer better corrosion resistance than Fe2O3. (C) 2021 Elsevier B.V. All rights reserved.
机译:研究了FeCrAl和FeNiCrAl等铁基候选耐事故燃料(ATF)包壳合金在模拟乏燃料池(SFP)水中的腐蚀行为。使用了具有不同腐蚀历史的试样,例如新鲜的、正常使用的(浸入模拟压水堆(PWR)环境中)和发生事故的(PWR浸水后暴露于高温蒸汽中)试样。所有具有不同腐蚀历史的铁基合金在SFP浸没试验期间均显示重量损失。在新鲜和正常使用条件下,所有合金在SFP水中的重量损失相对较小。在事故状态下,低铝FeNiCrAl合金的重量损失较大。总的来说,在所有之前的腐蚀历史中,高铝FeNiCrAl合金在SFP水中的耐腐蚀性与FeCrAl合金相当。这些合金在SFP水中的腐蚀行为受到预先形成的氧化物的显著影响,例如Cr2O3、Al2O3、富Fe和富Cr尖晶石氧化物比Fe2O3具有更好的耐腐蚀性。(c)2021爱思唯尔B.V.保留所有权利。

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