Parametric study of the deformation of transversely isotropic discs under diametral compression
The displacement field in a circular disc made of a transversely isotropic material is explored in a parametric manner. The disc is assumed to be loaded by a parabolic distribution of compressive radial stresses along two finite arcs of its periphery in the absence of any tangential (frictional) st...
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Gruppo Italiano Frattura
2017-06-01
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Online Access: | https://www.fracturae.com/index.php/fis/article/view/1906 |
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doaj-cafbabe87e5b476495688f6df9466ba62021-01-27T17:15:06ZengGruppo Italiano FratturaFrattura ed Integrità Strutturale1971-89932017-06-011141Parametric study of the deformation of transversely isotropic discs under diametral compressionChristos F. MarkidesStavros K. Kourkoulis The displacement field in a circular disc made of a transversely isotropic material is explored in a parametric manner. The disc is assumed to be loaded by a parabolic distribution of compressive radial stresses along two finite arcs of its periphery in the absence of any tangential (frictional) stresses. Advantage is here taken of a recently introduced closed-form analytic solution for the displacement field developed in an orthotropic disc under diametral compression which was achieved adopting the complex potentials technique for rectilinear anisotropic materials as it was formulated in the pioneering work of S.G. Lekhnitskii. The analytic nature of this solution permits thorough, indepth exploration of the influence of some crucial parameters on the qualitative and quantitative characteristics of the deformation of transversely isotropic circular discs compressed between the jaws of the devise suggested by the International Society for Rock Mechanics for the standardized implementation of the Brazilian-disc test. The parameters considered include the anisotropy ratio (i.e., the ratio of the two elastic moduli characterizing the disc material), the angle between the loading axis and the planes of transverse isotropy and the length of the loaded arcs. Strongly non-linear relationships between these parameters and the components of the displacement field are revealed. https://www.fracturae.com/index.php/fis/article/view/1906Rectilinearly anisotropic materialsTransverse isotropyAnisotropy ratioBrazilian-disc testDisplacement field |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Christos F. Markides Stavros K. Kourkoulis |
spellingShingle |
Christos F. Markides Stavros K. Kourkoulis Parametric study of the deformation of transversely isotropic discs under diametral compression Frattura ed Integrità Strutturale Rectilinearly anisotropic materials Transverse isotropy Anisotropy ratio Brazilian-disc test Displacement field |
author_facet |
Christos F. Markides Stavros K. Kourkoulis |
author_sort |
Christos F. Markides |
title |
Parametric study of the deformation of transversely isotropic discs under diametral compression |
title_short |
Parametric study of the deformation of transversely isotropic discs under diametral compression |
title_full |
Parametric study of the deformation of transversely isotropic discs under diametral compression |
title_fullStr |
Parametric study of the deformation of transversely isotropic discs under diametral compression |
title_full_unstemmed |
Parametric study of the deformation of transversely isotropic discs under diametral compression |
title_sort |
parametric study of the deformation of transversely isotropic discs under diametral compression |
publisher |
Gruppo Italiano Frattura |
series |
Frattura ed Integrità Strutturale |
issn |
1971-8993 |
publishDate |
2017-06-01 |
description |
The displacement field in a circular disc made of a transversely isotropic material is explored in a parametric manner. The disc is assumed to be loaded by a parabolic distribution of compressive radial stresses along two finite arcs of its periphery in the absence of any tangential (frictional) stresses. Advantage is here taken of a recently introduced closed-form analytic solution for the displacement field developed in an orthotropic disc under diametral compression which was achieved adopting the complex potentials technique for rectilinear anisotropic materials as it was formulated in the pioneering work of S.G. Lekhnitskii. The analytic nature of this solution permits thorough, indepth exploration of the influence of some crucial parameters on the qualitative and quantitative characteristics of the deformation of transversely isotropic circular discs compressed between the jaws of the devise suggested by the International Society for Rock Mechanics for the standardized implementation of the Brazilian-disc test. The parameters considered include the anisotropy ratio (i.e., the ratio of the two elastic moduli characterizing the disc material), the angle between the loading axis and the planes of transverse isotropy and the length of the loaded arcs. Strongly non-linear relationships between these parameters and the components of the displacement field are revealed.
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topic |
Rectilinearly anisotropic materials Transverse isotropy Anisotropy ratio Brazilian-disc test Displacement field |
url |
https://www.fracturae.com/index.php/fis/article/view/1906 |
work_keys_str_mv |
AT christosfmarkides parametricstudyofthedeformationoftransverselyisotropicdiscsunderdiametralcompression AT stavroskkourkoulis parametricstudyofthedeformationoftransverselyisotropicdiscsunderdiametralcompression |
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1724320734563532800 |