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지우석

Ji, Wooseok
Composite Materials and Structures Lab.
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DVC analysis of a polymer material subjected to tensile loading with synchrotron radiation tomography

Author(s)
Lee, SooyoungJi, Wooseok
Issued Date
2020-01
DOI
10.1016/j.polymertesting.2019.106204
URI
https://scholarworks.unist.ac.kr/handle/201301/30314
Fulltext
https://www.sciencedirect.com/science/article/pii/S014294181930457X
Citation
POLYMER TESTING, v.81, pp.106204
Abstract
Subsurface deformation behavior of a polymeric material is studied through the digital volume correlation (DVC) technique. Fundamental principles of the DVC technique are presented and the supplemental state-of-the-art algorithmic schemes to improve the efficiency and accuracy of the DVC analysis are also introduced. Tensile tests on an epoxy material are performed in conjunction with synchrotron radiation tomography. In order to create randomly distributed grayscale values in the tomograms for the following image analysis, microscale high-density particles are embedded when the epoxy specimens are fabricated. 3D tomographic images taken at multiple loading steps are utilized for the DVC analysis. The performance of the present DVC analysis is evaluated with the experimental data.
Publisher
ELSEVIER SCI LTD
ISSN
0142-9418
Keyword (Author)
Synchrotron radiationIn situ testingComputed tomographySubsurface deformationDigital volume correlation
Keyword
DIGITAL VOLUME CORRELATIONIMAGE CORRELATION CRITERIAMICRO-COMPUTED TOMOGRAPHYREGISTRATION ALGORITHMSSTRAIN-MEASUREMENTSDEFORMATION3DDISPLACEMENTMETHODOLOGYBONE

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