基于QFD的燃料棒端塞焊接关键影响因素分析

IF 0.4 Q4 NUCLEAR SCIENCE & TECHNOLOGY
Yinghong Li, Z. Lv, C. Li, Yuyu Lin, Shaofang Lin, Zhiyi Cai, Yong-jun Deng, Lihong Nie
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引用次数: 0

摘要

燃料棒端塞在焊接过程中的制造缺陷影响燃料的可靠性。在运行过程中,燃料棒端塞环焊或密封焊失败,将导致裂变气体进入反应堆一次冷却剂。为了确定燃料棒端塞焊过程中相关特征参数对燃料棒性能影响的灵敏度,基于质量功能展开法,以钨-惰性气体弧焊(TIG)为例,对燃料棒端塞焊的特征参数进行了分析。结合实验结果,以焊接接头尺寸、颜色、熔合深度、金相(膨胀、气孔、夹杂、晶界分离等)、抗氧化性等主要焊接性能指标为指标,采用LIKERT标度法构建了焊接参数与焊接性能的相关矩阵。并对其关联度和重要性进行了评定,建立了相应的端塞焊接质量屋,确定了影响端塞焊接质量的关键参数。在此基础上,对燃料元件制造厂的质量监督和焊接工艺提出了可行的优化改进建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Key Impact Factors Analysis of Fuel Rod End Plug Welding Based on QFD
Manufacturing defects of fuel rod end plug during welding affect fuel reliability. Failure of ring welding or sealing welding of fuel rod end plug during operation will cause fission gas to enter primary coolant of reactor. In order to determine the sensitivity of the influence of relevant characteristic parameters on the performance of fuel rods during end plug welding, based on the Quality Function Deployment method (QFD) and taking tungsten-inert-gas arc welding (TIG) as an example, the characteristic parameters of fuel rod end plug welding are analyzed. Combined with the experimental results, a correlation matrix between welding parameters and welding performance is constructed by LIKERT scale method with focus on the main welding performance criteria such as welding joint size, color, depth of fusion, metallography (bloating, porosity, inclusion, grain boundary separation, etc.), oxidation resistance, etc. And after rating its correlation degree and importance degree, the relevant House of Quality of end plug welding is constructed, and the key impact parameters are identified. Based on the above analysis, some feasible optimization and improvement proposals are put forward for the quality supervision and welding process of fuel element manufacturing factory.
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来源期刊
CiteScore
0.80
自引率
25.00%
发文量
35
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