Dataset of Tensile Properties for Sub-sized Specimens of Nuclear Structural Materials

Fuente: arXiv
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Main Authors: Li, Longze, Merickel, John W., Tang, Yalei, Song, Rongjie, Rittenhouse, Joshua E., Vakanski, Aleksandar, Xu, Fei
Format: Preprint
Published: 2024
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author Li, Longze
Merickel, John W.
Tang, Yalei
Song, Rongjie
Rittenhouse, Joshua E.
Vakanski, Aleksandar
Xu, Fei
author_facet Li, Longze
Merickel, John W.
Tang, Yalei
Song, Rongjie
Rittenhouse, Joshua E.
Vakanski, Aleksandar
Xu, Fei
contents Mechanical testing with sub-sized specimens plays an important role in the nuclear industry, facilitating tests in confined experimental spaces with lower irradiation levels and accelerating the qualification of new materials. The reduced size of specimens results in different material behavior at the microscale, mesoscale, and macroscale, in comparison to standard-sized specimens, which is referred to as the specimen size effect. Although analytical models have been proposed to correlate the properties of sub-sized specimens to standard-sized specimens, these models lack broad applicability across different materials and testing conditions. The objective of this study is to create the first large public dataset of tensile properties for sub-sized specimens used in nuclear structural materials. We performed an extensive literature review of relevant publications and extracted over 1,000 tensile testing records comprising 54 parameters including material type and composition, manufacturing information, irradiation conditions, specimen dimensions, and tensile properties. The dataset can serve as a valuable resource to investigate the specimen size effect and develop computational methods to correlate the tensile properties of sub-sized specimens.
format Preprint
id arxiv_https___arxiv_org_abs_2409_08306
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Dataset of Tensile Properties for Sub-sized Specimens of Nuclear Structural Materials
Li, Longze
Merickel, John W.
Tang, Yalei
Song, Rongjie
Rittenhouse, Joshua E.
Vakanski, Aleksandar
Xu, Fei
Instrumentation and Detectors
Materials Science
Mechanical testing with sub-sized specimens plays an important role in the nuclear industry, facilitating tests in confined experimental spaces with lower irradiation levels and accelerating the qualification of new materials. The reduced size of specimens results in different material behavior at the microscale, mesoscale, and macroscale, in comparison to standard-sized specimens, which is referred to as the specimen size effect. Although analytical models have been proposed to correlate the properties of sub-sized specimens to standard-sized specimens, these models lack broad applicability across different materials and testing conditions. The objective of this study is to create the first large public dataset of tensile properties for sub-sized specimens used in nuclear structural materials. We performed an extensive literature review of relevant publications and extracted over 1,000 tensile testing records comprising 54 parameters including material type and composition, manufacturing information, irradiation conditions, specimen dimensions, and tensile properties. The dataset can serve as a valuable resource to investigate the specimen size effect and develop computational methods to correlate the tensile properties of sub-sized specimens.
title Dataset of Tensile Properties for Sub-sized Specimens of Nuclear Structural Materials
topic Instrumentation and Detectors
Materials Science
url https://arxiv.org/abs/2409.08306