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This paper considers the constitutive relations of the nanoplate theory with surface stresses taken into account according to the original or complete Gurtin-Murdoch (GM) model and according to the simplified strain-consistent GM model (which does not include any non-strain terms in the surface stress-strain relation). It is shown that the potential energy of a deformed nanoplate according to both GM models preserves the classical structure using the redefined elastic moduli (effective tangential and flexural elastic properties, which contain the characteristics of bulk phase and a surface). This allows to apply the known solutions and methods from macroplates to nanoplates. As example, it is shown that the critical load of the compressive buckling of a nanoplate according to the complete and strain-consistent GM models has the difference between two solutions no more than 1.5%.
Translated title of the contribution | Выпучивание сжатой прямоугольной нанопластины |
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Original language | English |
Article number | 070007 |
Pages (from-to) | 1-9 |
Number of pages | 8 |
Journal | AIP Conference Proceedings |
Volume | 1959 |
DOIs | |
State | Published - 2 May 2018 |
ID: 28219352