Estimation of the Reference Temperature, T0, by Means of the Small Punch Testing Technique

D. Andrés, R. Lacalle, S. Cicero, J. Álvarez, M. Pinzón
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引用次数: 1

Abstract

The extension of the operation period of nuclear plants requires an accurate characterisation of the vessel materials, in order to monitor their embrittlement due to neutron irradiation. This need poses a challenge, since the availability of specimens inside the vessels to characterise their evolution is rather scarce. Therefore, innovative techniques have to be applied, in order to reduce the number of tests and the volume of the specimens. In this paper, the Master Curve approach has been employed, combined with the use of small punch notched specimens. The Master Curve methodology allows to evaluate the embrittlement of the material using a single parameter: the reference temperature, T0. This parameter has been estimated for several steels by means of modified small punch specimens, which are characterised by their reduced dimensions: only 10 × 10 × 0.5 mm. The obtained results have been compared with those obtained by means of conventional testing and a methodology to estimate T0 by means of small punch tests together with the Master Curve has been proposed.
用小冲孔试验技术估计参考温度T0
核电站运行周期的延长需要对容器材料进行准确的表征,以便监测它们因中子辐照而产生的脆化。这一需求带来了挑战,因为可用的血管内标本来描述它们的进化相当稀少。因此,必须采用创新技术,以减少试验次数和试样体积。本文采用了主曲线法,并结合小冲切试件的使用。主曲线方法允许使用单一参数评估材料的脆化:参考温度,T0。该参数已通过改进的小型冲孔试样对几种钢进行了估计,其特征是尺寸减小:仅为10 × 10 × 0.5 mm。将所得结果与常规试验结果进行了比较,并提出了利用小冲孔试验结合主曲线估算T0的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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