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Estimation of fracture behavior of thin walled nuclear reactor fuel pins using Pin-Loading-Tension (PLT) test

机译:用销钉-拉力(PLT)试验估算薄壁核反应堆燃料钉的断裂行为

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摘要

For integrity assessment of fuel pins of nuclear reactors using fracture mechanics technique, the solutions for fracture mechanics parameters such as stress intensity factor (SIF), η and γ functions J-R curve are necessary. These parameters are different for different pin geometries with various types of postulated flaws. These geometries do not conform to that of ASTM standard and hence, the above-mentioned parameters are usually not available. In this work, the authors have devised a pin-loaded tension (PLT) setup to determine the geometric functions for evaluation of stress intensity factors from experimental data using two different analytical methods. A 3D finite element (FE) analysis of the whole PLT setup has been carried out to evaluate the stress intensity factors and hence to validate the analytical solutions. FE analysis is carried out for various pin geometries (with different diameter and thickness values) to evaluate the limit loads and these solutions have been used to evaluate the η and γ functions which are essential for evaluation of the J-integral. Later, a load normalization technique has been used to estimate the J-R curves of a typical fuel pin geometry using the above η and γ functions. The results have been compared with available solutions from the literature.
机译:为了使用断裂力学技术评估核反应堆燃料销的完整性,需要求解诸如应力强度因子(SIF),η和γ函数的J-R曲线等断裂力学参数。这些参数对于具有各种假定缺陷的不同引脚几何形状而言是不同的。这些几何形状不符合ASTM标准,因此上述参数通常不可用。在这项工作中,作者设计了一种销钉加载张力(PLT)装置,以确定使用两种不同分析方法从实验数据中评估应力强度因子的几何函数。已经对整个PLT装置进行了3D有限元(FE)分析,以评估应力强度因子,从而验证分析解决方案。对各种销钉几何形状(具有不同的直径和厚度值)进行了有限元分析,以评估极限载荷,并且这些解决方案已用于评估η和γ函数,这对于评估J积分至关重要。后来,使用负载归一化技术使用上述η和γ函数来估算典型燃料销几何形状的J-R曲线。将结果与文献中可用的解决方案进行了比较。

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