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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >A novel methodology for estimating tensile properties in a small punch test employing in-situ DIC based deflection mapping
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A novel methodology for estimating tensile properties in a small punch test employing in-situ DIC based deflection mapping

机译:一种新型方法,用于估算基于原位DIC的偏转映射的小冲击试验中的拉伸性能

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摘要

Determining tensile properties from small punch test is being pursued actively in the nuclear industry due to the limited volume of material such tests use compared with standard tests which can be critical when considering active or development samples. One of the crucial challenges in harnessing the full potential of this technique is formulating methodologies which correlate the small punch specimen's deflection to equivalent uniaxial tensile properties. Existing approaches for correlation rely on deflection obtained from a single point on the small punch test specimen, used with empirical equations to make the correlation. However, the deflection and strain accumulation in a small punch specimen is highly heterogeneous and data from a single point does not represent the gross deformation evolving in the specimen. This data when used in conjunction with the empirical formulations for deriving equivalent uniaxial tensile properties, would not result in accurate identification of material properties. In this work we offer an alternative approach which uses the full field deflection of the specimen mapped through insitu digital image correlation. The use of digital image correlation combined with inverse finite element analysis augments the existing method of material properties identification from single point deflection data thereby significantly improving the reliability of the measurements. (c) 2020 The Authors. Published by Elsevier B.V.
机译:由于与标准试验相比,在核工业中,在核工业中,在核工业中,在核工业中,在核工业中,在核工业中,与标准试验相比,在核工业中,在核工业中追求抗拉性性能。利用该技术的全部潜力的一个至关重要的挑战是制定了与等同单轴拉伸性能的小冲击试样的偏转的方法。相关方法依赖于小冲击试样上单点获得的偏转,与经验方程一起使用以进行相关性。然而,小冲击样本中的偏转和应变累积是高度异构的,并且来自单个点的数据不代表样本中的粗糙变形。该数据与用于导出等效单轴拉伸性质的经验制剂结合使用时,不会导致材料性能的准确识别。在这项工作中,我们提供一种替代方法,它使用通过Insitu数字图像相关的标本的全场偏转。使用数字图像相关性与逆有限元分析结合增强了从单点偏转数据的现有材料特性识别方法,从而显着提高了测量的可靠性。 (c)2020作者。由elsevier b.v出版。

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