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The corrosion of aluminium alloy and release of intermetallic particles in nuclear reactor emergency core coolant: Implications for clogging of sump strainers

机译:核反应堆应急堆芯冷却液中铝合金的腐蚀和金属间颗粒的释放:对油底壳滤网堵塞的影响

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Clogging of sump strainers that filter the recirculation water in containment after a loss-of-coolant accident (LOCA) seriously impedes the continued cooling of nuclear reactor cores. In experiments examining the corrosion of aluminium alloy 6061, a common material in containment equipment, in borated solutions simulating the water chemistry of sump water after a LOCA, we found that Fe-bearing intermetallic particles, which were initially buried in the Al matrix, were progressively exposed as corrosion continued. Their cathodic naturevis-à-visthe Al matrix provoked continuous trenching around them until they were finally released into the test solution. Such particles released from Al alloy components in a reactor containment after a LOCA will be transported to the sump entrance with the recirculation flow and trapped by the debris bed that typically forms on the strainer surface, potentially aggravating strainer clogging. These Fe-bearing intermetallic particles, many of which had a rod or thin strip-like geometry, were identified to be mainly the cubic phase αc-Al(Fe,Mn)Si with an average size of about 2.15?μm; 11.5?g of particles with a volume of about 3.2?cm3would be released with the dissolution of every 1?kg 6061 aluminium alloy.
机译:冷却液流失事故(LOCA)后,用于过滤安全壳中循环水的集油槽过滤器堵塞严重阻碍了核反应堆堆芯的持续冷却。在实验中,在模拟LOCA后在污水处理模拟的污水处理的硼酸溶液中检验了封闭设备中常用材料铝合金6061的腐蚀,我们发现最初埋在Al基体中的含铁金属间化合物颗粒随着腐蚀的继续逐渐暴露。它们的阴极性质相对于Al基质引起了周围的连续沟槽,直到最终将它们释放到测试溶液中为止。在LOCA之后,从反应堆容器中的铝合金部件释放的此类颗粒将随再循环流被输送到集油槽入口,并被通常形成在过滤器表面的碎屑床截留,从而可能加剧过滤器的堵塞。这些含铁金属间化合物,其中许多具有棒状或细条状几何形状,被确定主要是立方相αc-Al(Fe,Mn)Si,平均尺寸约为2.15?μm。每溶解1千克6061铝合金,就会释放出11.5克约3.2立方厘米3的颗粒。

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