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Ceramic breeder pebble bed packing stability under cyclic loads

机译:陶瓷陶瓷卵石床在周期性载荷下的填充稳定性

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Considering the optimization of blanket performance, it is desired that the bed morphology and packing state during reactor operation are stable and predictable. Both experimental and numerical work are performed to explore the stability of pebble beds, in particular under pulsed loading conditions. Uniaxial compaction tests have been performed for both KIT's Li4SiO4 and NFRI's Li2TiO3 pebble beds at elevated temperatures (up to 750 degrees C) under cyclic loads (up to 6 MPa). The obtained data shows the stress-strain loop initially moves towards the larger strain and nearly saturates after a certain number of cyclic loading cycles. The characterized FEM CAP material models for a Li4SiO4 pebble bed with an edge-on configuration are used to simulate the thermomechanical behavior of pebble bed under ITER pulsed operations. Simulation results have shown the cyclic variation of temperature/stress/strain/gap and also the same saturation trend with experiments under cyclic loads. Therefore, it is feasible for pebble bed to maintain its packing stability during operation when disregarding pebbles' breakage and irradiation. (C) 2016 Elsevier B.V. All rights reserved.
机译:考虑到橡皮布性能的优化,期望反应器操作期间的床形态和填充状态是稳定且可预测的。进行实验和数值研究以探索卵石床的稳定性,特别是在脉冲加载条件下。 KIT的Li4SiO4和NFRI的Li2TiO3卵石床均已在高温(最高750摄氏度)和循环载荷(最高6 MPa)下进行了单轴压实测试。所获得的数据表明,应力-应变回路最初朝着较大的应变方向移动,并在一定数量的循环载荷循环后几乎饱和。具有边缘接通结构的Li4SiO4卵石床的特征化FEM CAP材料模型用于模拟ITER脉冲操作下卵石床的热力学行为。仿真结果表明,温度/应力/应变/间隙的循环变化以及在循环载荷下的实验具有相同的饱和趋势。因此,不考虑卵石的破损和照射,卵石床在操作期间保持其填充稳定性是可行的。 (C)2016 Elsevier B.V.保留所有权利。

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