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Evaluation Of A Delayed Hydride Cracking In Zr-2.5nb Candu And Rbmk Pressure Tubes

机译:Zr-2.5nb Candu和Rbmk压力管中延迟氢化物开裂的评估

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Delayed hydride cracking (DHC) has been identified as a cause for the failure of zirconium-based alloy pressure tubes in CANDU and RBMK reactors. In this paper, a delayed hydride cracking (DHC) was investigated using compact toughness specimens in order to determine the crack growth velocity in CANDU and RBMK Zr-2.5Nb pressure tubes under a constant loading, and different temperatures and different hydrogen contents. The fractured surface was examined and the velocity of a DHC for different materials was measured and analyzed. The results showed that the velocity of the RBMK pressure tube was lower and it had a longer incubation time at the same hydrogen content when compared to those of the CANDU pressure tube, which could be attributed to a lower yield stress in the RBMK tube. On the other hand, there was no continuous p-phase film in the grain boundaries of the CANDU tube. The formation of a stri-ation on the fractured surface indicated that the crack growth of a DHC was discontinuous due to hydrogen diffusion and its subsequent accumulation at the tip of a crack.
机译:延迟氢化物裂化(DHC)已被确定为CANDU和RBMK反应堆中锆基合金压力管失效的原因。为了确定在恒定载荷,不同温度和不同氢含量下,CANDU和RBMK Zr-2.5Nb压力管中的裂纹扩展速度,本文使用致密韧性试样研究了延迟氢化物开裂(DHC)。检查断裂的表面,并测量和分析不同材料的DHC速度。结果表明,与CANDU压力管相比,RBMK压力管的速度较低,并且在相同氢含量下具有更长的孵育时间,这可以归因于RBMK管的屈服应力较低。另一方面,在CANDU管的晶界中没有连续的p相膜。在断裂表面上形成条纹表明,DHC的裂纹扩展是不连续的,这是由于氢的扩散及其随后在裂纹尖端的积累。

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