首页> 外文期刊>Materials Science >INFLUENCE OF SURFACE TREATMENT ON THE CORROSION OF THE PIPES OF FUEL ELEMENTS MADE OF ZR1NB AND E110 ZIRCONIUM ALLOYS
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INFLUENCE OF SURFACE TREATMENT ON THE CORROSION OF THE PIPES OF FUEL ELEMENTS MADE OF ZR1NB AND E110 ZIRCONIUM ALLOYS

机译:表面处理对ZR1NB和E110锆合金制成的燃料元件管道腐蚀的影响

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摘要

We study the long-term corrosion resistance in water for the samples of pipes used as protective shells of the fuel element and made of Zr1Nb calcium thermal alloy (earlier, it was called KTTs-110) and E110 alloy applicable in contemporary water-cooled, water-moderated reactors WWER-1000 and WWER-400. The tests were carried out in water whose composition was close to the composition of the water coolant of WWER reactors at a working temperature of the shells of fuel element equal to 350 degrees C. It was discovered that the process of oxidation is first described by the regularity close to a cubic function. However, after a certain period of time, this dependence suddenly changes into the accelerated oxidation ("kink") running according to a power law approaching the linear dependence. We analyzed the kinetics of corrosion and the structures of oxide films and alloys after 50,000 h of testing. The influence of the concentration of oxygen, as an admixture in alloys, and the procedures of treatment of the surfaces of the samples of pipes on the corrosion processes is discussed, as well as the long-term corrosion resistance of alloys. It is shown that Zr alloys with niobium (1 wt.% Nb), such as E110 and Zr1Nb experimental alloy developed in Ukraine are capable of preserving the high corrosion resistance and protective properties for at least seven fuel reactor campaigns.
机译:我们研究水中的长期耐腐蚀性,用于管道的样品用作燃料元件的保护壳,由Zr1NB钙热合金(早于,它被称为KTTS-110)和适用于现代水冷的E110合金,水调节反应器WWER-1000和WWER-400。在燃料元件壳的工作温度在等于350℃的水中靠近WWER反应器的水冷却剂的组合物的水中进行测试。发现氧化过程首先由靠近立方体函数的规律性。然而,在一段时间之后,根据接近线性依赖的电力法突然改变加速氧化(“扭结”)。我们分析了50,000小时后腐蚀的动力学和氧化膜和合金结构的动力学。讨论了氧气浓度的影响,作为合金中的混合物,以及管道样品的处理过程中的腐蚀过程的样品,以及合金的长期耐腐蚀性。结果表明,在乌克兰开发的铌(1wt.%Nb)的Zr合金,例如E110和Zr1NB实验合金,能够为至少七个燃料反应堆运动提供高耐腐蚀性和保护性能。

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