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Comparison of the High Burn-Up Corrosion on M5 and Low Tin Zircaloy-4

机译:M5和低锡锆型锆型高燃烧腐蚀的比较

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The corrosion and hydriding behavior of M5 and low tin Zircaloy-4 in PWR have been compared at high burn-ups ( > 70 GWd/t). Whereas low tin Zircaloy-4 reached about 90 μm in oxide thickness and is subjected to significant precipitation of hydride rims at the metal/oxide interface, the oxide layer on M5 remains below 20 μm, and a hydrogen content remains below 100 ppm. Owing to the modification of the oxide structure and hydrogen localization observed, it is proposed that, concerning the high burn-up corrosion acceleration of Zircaloy-4, the tin content is the parameter governing the onset of the high burn-up corrosion acceleration, which is further accelerated by hydride precipitation at the metal/oxide interface and dissolution of precipitates. On M5, since no significant evolution of the oxide structure was observed, and none of the parameters identified as contributors to acceleration are present, no acceleration of corrosion kinetics is expected at higher burn-ups.
机译:在高烧伤(> 70 gwd / t)中比较了M5和低锡锆锆锆锆锆锆锆型4的腐蚀和水合行为。然而,低锡锆氧化锆-4在氧化物厚度达到约90μm,并且在金属/氧化物界面处经受氢化物轮辋的显着沉淀,M5上的氧化物层保持低于20μm,氢含量保持在100ppm以下。由于氧化氧化物结构和氢定位观察到,提出了关于锆铝-4的高燃烧腐蚀加速度,锡含量是针对高燃烧腐蚀加速的爆发的参数,通过金属/氧化物界面处的氢化物沉淀和沉淀物溶解进一步加速。在M5上,由于未观察到氧化物结构的显着演变,并且存在鉴定为加速的贡献者的任何参数都存在,因此在较高的烧伤时没有预期腐蚀动力学的加速度。

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