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Numerical and experimental investigation on thermal expansion of UO2-5 vol% Mo microcell pellet for qualitative comparison to UO2 pellet

机译:UO2-5 Vol%Mo Microcell颗粒的热膨胀的数值和实验研究与UO2颗粒的定性比较

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Thermally conductive microcell UO2 pellets in which metallic networks enclose UO2 granules have been highlighted due to their enhanced thermal performance for a potential candidate of accident-tolerant fuels. However, studies on thermal expansion effects of microcell UO2 pellets are still lacking. Here, stress and strain distributions of the fabricated UO2-5 vol% Mo microcell pellet under thermal expansion were investigated. After we confirmed that the numerical results agreed well with experimental measurement in terms of linear thermal expansion, stress and strain distributions of the microcell pellets were calculated under maximum stress and maximum strain conditions. As a result, formation of Mo network decreases the maximum hoop stress and the maximum radial strain of UO2 pellets by 50.9% and by 29.4%, respectively under a linear heat generation rate of 200 W/cm. Finally, the UO2-5 vol% Mo microcell pellet can decrease the maximum cladding stresses by 36.7%. (C) 2019 Elsevier B.V. All rights reserved.
机译:导热微胶体UO2颗粒,其中由于其具有引发的耐受燃料的潜在候选者的热性能而突出了金属网络包围UO2颗粒。然而,仍然缺乏关于微荷UO2颗粒的热膨胀效应的研究。这里,研究了在热膨胀下制造的UO2-5 Vol%Mo Microcell颗粒的应力和应变分布。在我们确认在线性热膨胀方面与实验测量相同的数值结果,在最大应力和最大应变条件下计算微小区颗粒的应力和应变分布。结果,MO网络的形成将UO2颗粒的最大箍应力和最大径向菌株降低50.9%,分别在200W / cm的线性发热率下分别为29.4%。最后,UO2-5 Vol%Mo Microcell颗粒可以将最大包层应力降低36.7%。 (c)2019 Elsevier B.v.保留所有权利。

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