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Intergranular fracture in irradiated Inconel X-750 containing very high concentrations of helium and hydrogen

机译:辐照的Inconel X-750中含有非常高的氦和氢浓度的晶间断裂

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In recent years, it has been observed that Inconel X-750 spacers in CANDU reactors exhibits lower ductility with reduced load carrying capacity following irradiation in a reactor environment. The fracture behaviour of ex-service material was also found to be entirely intergranular at high doses. The thermalized flux spectrum in a CANDU reactor leads to transmutation of Ni-58 to Ni-59. The Ni-59 itself has unusually high thermal neutron reaction cross-sections of the type: (n, gamma), (n, p), and (n, alpha). The latter two reactions, in particular, contribute to a significant enhancement of the atomic displacements in addition to creating high concentrations of hydrogen and helium within the material. Microstructural examinations by transmission electron microscopy (TEM) have confirmed the presence of helium bubbles in the matrix and aligned along grain boundaries and matrix-precipitate interfaces. Helium bubble size and density are found to be highly dependent on the irradiation temperature and material microstructure; the bubbles are larger within grain boundary precipitates. TEM specimens extracted from fracture surfaces and crack tips provide information that is consistent with crack propagation along grain boundaries due to the presence of He bubbles. (C) 2014 Published by Elsevier B.V.
机译:近年来,已经观察到,CANDU反应堆中的Inconel X-750隔片在反应堆环境中辐照后表现出较低的延展性和降低的承载能力。还发现,高剂量时,退役材料的断裂行为完全是晶间的。 CANDU反应器中的热通量谱导致Ni-58转变为Ni-59。 Ni-59本身具有异常高的热中子反应截面,其类型为(n,γ),(n,p)和(n,α)。除了在材料内产生高浓度的氢和氦外,后两个反应尤其有助于显着提高原子位移。通过透射电子显微镜(TEM)进行的微观结构检查已确认,氦气气泡存在于基体中,并沿晶界和基体-沉淀物界面排列。发现氦气气泡的大小和密度高度依赖于辐照温度和材料的微观结构。晶界沉淀物中的气泡较大。从断裂表面和裂纹尖端提取的TEM样品提供的信息与由于He气泡的存在而沿着晶粒边界的裂纹扩展一致。 (C)2014由Elsevier B.V.发布

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