Synergistic coupling of thermomechanical loading and irradiation damage in Zircaloy-4

Daniel J. Long, Yang Liu, Chris Hardie, Fionn P.E. Dunne
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Abstract

This work addresses in-situ synergistic irradiation and thermomechanical loading of nuclear reactor components by linking new mechanistic understanding with crystal plasticity finite element modelling to describe the formation and thermal and mechanical annihilation of dislocation loops. A model of pressurised reactor cladding is constructed to extract realistic boundary conditions for crystal plasticity microstructural sub-modelling. Thermomechanical loads are applied to the sub-model to investigate (i) the unirradiated state, (ii) synergistic coupling of irradiation damage and thermal annihilation of dislocation loops, (iii) synergistic coupling of irradiation damage without thermal annihilation of dislocation loops, and (iv) a post-irradiated state. Results demonstrate that the synergistic coupling of irradiation damage and thermomechanical loads leads to the early onset of plasticity, which is exacerbated by the thermal annihilation of dislocations, while the post-irradiated case remains predominantly elastic due to substantial irradiation hardening. It is shown that full synergistic coupling leads to localisation of quantities linked with crack nucleation including geometrically necessary dislocations and stress.
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锆合金-4 中热力学载荷与辐照损伤的协同耦合作用
这项研究通过将新的机理认识与晶体塑性有限元建模联系起来,描述位错环的形成、热湮灭和机械湮灭,从而解决核反应堆部件的原位协同辐照和热机械加载问题。构建了加压反应堆包壳模型,以提取晶体塑性微结构子建模的现实边界条件。对该子模型施加热机械载荷,以研究 (i) 未辐照状态,(ii) 辐照损伤与位错环热湮灭的协同耦合,(iii) 辐照损伤与位错环热湮灭的协同耦合,以及 (iv) 后辐照状态。结果表明,辐照损伤和热机械载荷的协同耦合导致塑性的早期出现,而位错的热湮灭又加剧了塑性的出现,而辐照后的情况则由于大量的辐照硬化而主要保持弹性。研究表明,完全协同耦合会导致与裂纹成核相关的量的局部化,包括几何上必要的位错和应力。
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