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EFFECTS OF PLATE CURVATURE ON THERMO-MECHANICAL PERFORMANCE OF U-10MO MONOLITHIC FUEL PLATES

机译:平板弯曲度对U-10MO整体燃料板热机械性能的影响

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Monolithic fuel is a candidate fuel form being considered for the conversion of high-performance research reactors. This plate-type fuel consists of a high-density, U-Mo fuel in a monolithic form that is sandwiched between zirconium diffusion barriers, and encapsulated in an aluminum cladding. To date, large number of plates have been irradiated with satisfactory performance. The program is now moving into the qualification phase, a predecessor to the timely conversion of the target reactors. Since each reactor employs distinct fuel plate geometries for various consideration, resulting nearly 50 distinct plate geometries with unique plate design features, a single "generic " plate geometry capturing all of the extremities is not achievable. This limitation consequently requires much more cautious performance evaluations, as thermal and mechanical response of a plate with certain geometry may not be representative for a plate with a different geometry. To evaluate the performance of the plates for various geometric parameters, parametric sensitives studies have been employed. One of the important geometric parameters may have potential effects on the performance is the plate curvature. In this study, curved-plates were parametrically simulated to investigate if this geometric parameter has any effects on overall performance, In particular, radius of curvatures of the plates were varied between the bounding values, and the plates were simulated for comparable irradiation histories. The resulted temperature, deformation, stress-strain results were comparatively evaluated. The results have indicated that preferential deformations occur. This consequently caused shifting of plate centerline on curved plates. The magnitude of centerline shifts increased with increasing plate curvatures.
机译:整体燃料是正在考虑用于高性能研究反应堆转换的一种候选燃料形式。这种板式燃料由单块形式的高密度U-Mo燃料组成,夹在锆扩散壁垒之间,并封装在铝包层中。迄今为止,已经辐照了大量具有令人满意性能的板。该计划目前正在进入鉴定阶段,这是及时改造目标反应堆的前身。由于每个反应堆出于各种考虑采用不同的燃料板几何形状,从而产生将近50种具有独特板设计特征的不同板几何形状,因此无法实现捕获所有末端的单个“通用”板几何形状。因此,此限制需要更加谨慎的性能评估,因为具有某些几何形状的板的热响应和机械响应可能无法代表具有不同几何形状的板。为了评估各种几何参数的印版性能,已采用了参数敏感度研究。重要的几何参数之一可能会对性能产生潜在影响,即板曲率。在这项研究中,参数化地模拟了弯曲板,以研究此几何参数是否对整体性能有任何影响,特别是,板的曲率半径在边界值之间变化,并且对板进行了模拟以比较辐射历史。对得到的温度,变形,应力-应变结果进行了比较评估。结果表明发生了优先变形。因此,这导致了弧形板上的板中心线发生偏移。中心线偏移量随板曲率的增加而增加。

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