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Effect of Contacting Shapes on the Worn Area Properties of a Nuclear Fuel Rod in Room Temperature Air and Water

机译:接触形状对室温空气和水中核燃料棒磨损区域特性的影响

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摘要

Fretting wear experiments were conducted to evaluate the effects of the contacting shapes of spacer grid springs on the wear behavior of a nuclear fuel rod in room temperature air and water. The main objective was to quantitatively compare the wear behavior of the nuclear fuel rod with the variation of the contacting spring shapes. The variation of the real worn area in the wear scar, the change in the wear volume and the maximum wear depth with the slip amplitude were calculated and measured through an optical micrometer and surface profilometry. The results of the wear tests showed that the wear volume and the maximum wear depth were sensitively affected by each spring shape with increasing slip amplitude and with a change of the test environment. From the analysis of the wear scar, it is possible to separate the size of the wear scar from the real worn area and the transferred one. In addition, we found that the wear volume has a linear relation with the real worn area rather than the size of the wear scar and this was only determined by using each spring shape even though the wear tests were carried out with different conditions. From the above results, it is possible to evaluate a wear resistant spring by using the correlation between the variation of the real worn area and the wear behavior at each spring shape.
机译:进行了微动磨损实验,以评估间隔栅弹簧的接触形状对核燃料棒在室温空气和水中的磨损行为的影响。主要目的是定量比较核燃料棒的磨损行为和接触弹簧形状的变化。通过光学千分尺和表面轮廓仪计算并测量磨损痕迹中实际磨损区域的变化,磨损量的变化以及最大磨损深度随滑动幅度的变化。磨损测试的结果表明,随着滑动幅度的增加和测试环境的变化,每种弹簧形状对磨损量和最大磨损深度都具有敏感的影响。通过对磨损痕迹的分析,可以将磨损痕迹的大小与实际磨损区域和转移的磨损区域分开。此外,我们发现磨损量与实际磨损区域具有线性关系,而不是磨损痕迹的大小,并且即使在不同条件下进行磨损测试,也只能通过使用每种弹簧形状来确定磨损量。根据以上结果,可以通过使用实际磨损面积的变化与每种弹簧形状下的磨损行为之间的相关性来评估耐磨弹簧。

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