Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/31101
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dc.contributor.authorWang, S-
dc.contributor.authorWang, B-
dc.contributor.authorMu, S-
dc.contributor.authorZhang, J-
dc.contributor.authorZhang, Y-
dc.contributor.authorGong, X-
dc.date.accessioned2025-04-30T08:43:04Z-
dc.date.available2025-04-30T08:43:04Z-
dc.date.issued2025-04-19-
dc.identifierORCiD: Shuai Wang https://orcid.org/0000-0002-5601-0385-
dc.identifierORCiD: Bin Wang https://orcid.org/0000-0002-1398-6599-
dc.identifierArticle number 1875-
dc.identifier.citationWang S. et al. (2025) 'Study on the Approach to Obtaining Mechanical Properties Using Digital Image Correlation Technology', Materials, 18 (8), 1875, pp. 1 - 11. doi: 10.3390/ma18081875.en_US
dc.identifier.urihttps://bura.brunel.ac.uk/handle/2438/31101-
dc.descriptionData Availability Statement: The original contributions presented in this study are included in the article. Further inquiries can be directed to the corresponding author.en_US
dc.description.abstractAccurate mechanical property parameters constitute an indispensable guarantee for the accuracy of finite element simulations. Traditionally, uniaxial tensile tests are instrumental in acquiring the stress–strain data of materials during elongation, thereby facilitating the determination of the materials’ mechanical property parameters. By capitalizing on the digital image correlation (DIC) non-contact optical measurement technique, the entire test can be comprehensively documented using high-speed cameras. Subsequently, through in-depth analysis and meticulous numerical computations enabled by computer vision technology, the complete strain evolution of the specimen throughout the test can be precisely obtained. In this study, a comparison was made between the application of strain gauges and DIC testing systems for measuring the strain alterations during the tensile testing of 316L stainless steel, which serves as the material for the primary circuit pipelines of pressurized water reactor (PWR) nuclear power plants (NPPs). The data procured from these two methods were utilized as material mechanical parameters for finite element simulations, and a numerical simulation of the uniaxial tensile test was executed. The results reveal that, within the measuring range of the strain gauge, the DIC method generates measurement outcomes that are virtually identical to those obtained by strain gauges. Given its wider measurement range, the DIC method can be effectively adopted in the process of obtaining material mechanical parameters for finite element simulations.en_US
dc.description.sponsorshipThis work was financially supported by the State Administration for Market Regulation technical support project, China (2023YJ25); the Natural Science Foundation of Shaanxi province of China (2023-JC-YB-422); the Xi’an Jiaotong University State Key Lab for Strength and Vibration for Mechanical Structures Open Lab Project, China (SV2023-KF-10); Royal Society, UK (IEC\NSFC\233524).en_US
dc.format.extent1 - 11-
dc.format.mediumElectronic-
dc.languageEnglish-
dc.language.isoen_USen_US
dc.publisherMDPIen_US
dc.rightsAttribution 4.0 International-
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/-
dc.subjectuniaxial tensile testen_US
dc.subjectelastoplastic finite element methoden_US
dc.titleStudy on the Approach to Obtaining Mechanical Properties Using Digital Image Correlation Technologyen_US
dc.typeArticleen_US
dc.date.dateAccepted2025-04-15-
dc.identifier.doihttps://doi.org/10.3390/ma18081875-
dc.relation.isPartOfMaterials-
pubs.issue8-
pubs.publication-statusPublished online-
pubs.volume18-
dc.identifier.eissn1996-1944-
dc.rights.licensehttps://creativecommons.org/licenses/by/4.0/legalcode.en-
dcterms.dateAccepted2025-04-19-
dc.rights.holderThe authors-
Appears in Collections:Dept of Mechanical and Aerospace Engineering Research Papers

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