Three-phase elliptical inclusions with internal uniform hydrostatic stress resultants in isotropic laminated plates
Within the framework of the Kirchhoff-Love isotropic and laminated plate theory, we study the internal stress resultants of a three-phase elliptical inclusion which is bonded to an infinite matrix through an interphase layer. The interfaces of the three-phase inclusion are two confocal ellipses. Two...
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sg-ntu-dr.10356-816752020-03-07T13:19:19Z Three-phase elliptical inclusions with internal uniform hydrostatic stress resultants in isotropic laminated plates Wang, Xu Zhou, Kun School of Mechanical and Aerospace Engineering Isotropic laminated plate Three-phase elliptical inclusion Within the framework of the Kirchhoff-Love isotropic and laminated plate theory, we study the internal stress resultants of a three-phase elliptical inclusion which is bonded to an infinite matrix through an interphase layer. The interfaces of the three-phase inclusion are two confocal ellipses. Two conditions are found to ensure that the internal stress resultants within the elliptical inclusion are uniform and hydrostatic. For given material and geometric parameters of the composite system, the two conditions can be interpreted as restrictions on the remote uniform membrane stress resultants and bending moments. When these two conditions are met, the hoop membrane stress resultant and hoop bending moment in the interphase layer are found to be uniform along the entire interphase/inclusion interface. ASTAR (Agency for Sci., Tech. and Research, S’pore) 2016-07-12T04:46:19Z 2019-12-06T14:35:54Z 2016-07-12T04:46:19Z 2019-12-06T14:35:54Z 2014 Journal Article Wang, X., & Zhou, K. (2015). Three-phase elliptical inclusions with internal uniform hydrostatic stress resultants in isotropic laminated plates. European Journal of Mechanics - A/Solids, 49, 125-136. 0997-7538 https://hdl.handle.net/10356/81675 http://hdl.handle.net/10220/40915 10.1016/j.euromechsol.2014.07.004 en European Journal of Mechanics - A/Solids © 2014 Elsevier Masson SAS. |
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Isotropic laminated plate Three-phase elliptical inclusion |
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Isotropic laminated plate Three-phase elliptical inclusion Wang, Xu Zhou, Kun Three-phase elliptical inclusions with internal uniform hydrostatic stress resultants in isotropic laminated plates |
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Within the framework of the Kirchhoff-Love isotropic and laminated plate theory, we study the internal stress resultants of a three-phase elliptical inclusion which is bonded to an infinite matrix through an interphase layer. The interfaces of the three-phase inclusion are two confocal ellipses. Two conditions are found to ensure that the internal stress resultants within the elliptical inclusion are uniform and hydrostatic. For given material and geometric parameters of the composite system, the two conditions can be interpreted as restrictions on the remote uniform membrane stress resultants and bending moments. When these two conditions are met, the hoop membrane stress resultant and hoop bending moment in the interphase layer are found to be uniform along the entire interphase/inclusion interface. |
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School of Mechanical and Aerospace Engineering |
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School of Mechanical and Aerospace Engineering Wang, Xu Zhou, Kun |
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Article |
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Wang, Xu Zhou, Kun |
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Wang, Xu |
title |
Three-phase elliptical inclusions with internal uniform hydrostatic stress resultants in isotropic laminated plates |
title_short |
Three-phase elliptical inclusions with internal uniform hydrostatic stress resultants in isotropic laminated plates |
title_full |
Three-phase elliptical inclusions with internal uniform hydrostatic stress resultants in isotropic laminated plates |
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Three-phase elliptical inclusions with internal uniform hydrostatic stress resultants in isotropic laminated plates |
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Three-phase elliptical inclusions with internal uniform hydrostatic stress resultants in isotropic laminated plates |
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three-phase elliptical inclusions with internal uniform hydrostatic stress resultants in isotropic laminated plates |
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2016 |
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https://hdl.handle.net/10356/81675 http://hdl.handle.net/10220/40915 |
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