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Realistically Improved Finite Element Analysis of Spring Supports in a Nuclear Fuel Spacer Grid

机译:实际改进的核燃料垫片网格中弹簧支座的有限元分析。

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The most important function of grid springs in a spacer grid is to position the fuel rods appropriately using a friction force and to prohibit the fuel rods from dropping during a normal reactor operation. While the fuel burn-up increases, spring force of grid springs decreases because the spring stiffness of grid springs is degraded by a high temperature and an irradiation effect in a reactor core. Therefore this phenomenon has to be reflected when the initial spring force of a grid spring is being designed. Usually, characterization tests of grid springs areconducted to verify designed grid springs have suitable spring forces. (Kim, 2007)FE model using a contact definition and rigid beam elements for a welding bead for predicting the spring stiffness without any spring test was established and verified in a previous research. In those days, two assumptions were used and the analysis for an unloading process was not included in spite of its importance for a spring design. In this paper, the fact that the assumptions have no effect on the analysis results is proven and a realistically improved FEanalysis method using coupling constraints for a welding bead is suggested for investigating the spring's characteristics under an in-grid boundary condition.
机译:间隔栅中的栅网弹簧最重要的功能是利用摩擦力适当定位燃料棒,并在正常反应堆运行期间禁止燃料棒掉落。在燃料燃尽增加的同时,由于高温和反应堆堆芯中的辐照效应降低了格栅弹簧的弹簧刚度,因此格栅弹簧的弹簧力减小。因此,在设计格栅弹簧的初始弹簧力时必须反映这种现象。通常,格状弹簧的特性测试是 进行操作以验证设计的板簧是否具有合适的弹力。 (金,2007年) 在先前的研究中建立并验证了使用接触定义和用于焊道的刚性梁元素的FE模型,该模型无需任何弹簧测试即可预测弹簧刚度。当时,使用了两个假设,尽管卸载过程对弹簧设计很重要,但并未包括对卸载过程的分析。本文证明了这些假设对分析结果没有影响的事实,并可以实际地改善有限元分析。 为了研究网格内边界条件下的弹簧特性,建议使用一种针对焊缝的耦合约束的有限元分析方法。

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