Modelling of Impulse Load Influence on the Stress State of Foam Materials with Positive and Negative Poisson’s Ratio
The influence of impulse load applied for different duration on the distribution of normalised dynamic radial stresses in positive and negative Poisson’s ratio medium was investigated in this study. For solving the non-stationary problem in the case of plane deformation for structurally inhomogeneou...
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Online Access: | https://doi.org/10.2478/ama-2020-0011 |
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doaj-a277e30a8b2f466caf00955a29cfd46d2021-09-06T19:41:06ZengSciendoActa Mechanica et Automatica 2300-53192020-06-01142798310.2478/ama-2020-0011ama-2020-0011Modelling of Impulse Load Influence on the Stress State of Foam Materials with Positive and Negative Poisson’s RatioSulym Heorhiy0Mikulich Olena1Shvabyuk Vasyl’2Faculty of Mechanical Engineering, Department of Mechanics and Applied Computer Science, Bialystok University of Technology, ul. Wiejska 45C, 15-351Bialystok, PolandFaculty of Architecture, Construction and Design, Department of Applied Mathematics and Mechanics, Lutsk National Technical University, 75 Lvivska st., Lutsk, 43018, UkraineFaculty of Architecture, Construction and Design, Department of Applied Mathematics and Mechanics, Lutsk National Technical University, 75 Lvivska st., Lutsk, 43018, UkraineThe influence of impulse load applied for different duration on the distribution of normalised dynamic radial stresses in positive and negative Poisson’s ratio medium was investigated in this study. For solving the non-stationary problem in the case of plane deformation for structurally inhomogeneous materials, the model of Cosserat continuum was applied. This model enables accounting for the influence of shear-rotation deformation of micro-particles of the medium. In the framework of Cosserat elasticity, on applying the Fourier transforms for time variable and developing the boundary integral equation method, solving of the non-stationary problem reduces to the system of singular integral equations, where the components that determine the influence of shear-rotation deformations are selected. The numerical calculations were performed for the foam medium with positive and negative Poisson’s ratio for different values of time duration of impulse. Developed approach can be used to predict the mechanical behaviour of foam auxetic materials obtained at different values of a volumetric compression ratio under the action of time variable load based on analysis of the distribution of radial stresses in foam medium.https://doi.org/10.2478/ama-2020-0011stress statefoampoisson’s ratiocosserat elasticity |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sulym Heorhiy Mikulich Olena Shvabyuk Vasyl’ |
spellingShingle |
Sulym Heorhiy Mikulich Olena Shvabyuk Vasyl’ Modelling of Impulse Load Influence on the Stress State of Foam Materials with Positive and Negative Poisson’s Ratio Acta Mechanica et Automatica stress state foam poisson’s ratio cosserat elasticity |
author_facet |
Sulym Heorhiy Mikulich Olena Shvabyuk Vasyl’ |
author_sort |
Sulym Heorhiy |
title |
Modelling of Impulse Load Influence on the Stress State of Foam Materials with Positive and Negative Poisson’s Ratio |
title_short |
Modelling of Impulse Load Influence on the Stress State of Foam Materials with Positive and Negative Poisson’s Ratio |
title_full |
Modelling of Impulse Load Influence on the Stress State of Foam Materials with Positive and Negative Poisson’s Ratio |
title_fullStr |
Modelling of Impulse Load Influence on the Stress State of Foam Materials with Positive and Negative Poisson’s Ratio |
title_full_unstemmed |
Modelling of Impulse Load Influence on the Stress State of Foam Materials with Positive and Negative Poisson’s Ratio |
title_sort |
modelling of impulse load influence on the stress state of foam materials with positive and negative poisson’s ratio |
publisher |
Sciendo |
series |
Acta Mechanica et Automatica |
issn |
2300-5319 |
publishDate |
2020-06-01 |
description |
The influence of impulse load applied for different duration on the distribution of normalised dynamic radial stresses in positive and negative Poisson’s ratio medium was investigated in this study. For solving the non-stationary problem in the case of plane deformation for structurally inhomogeneous materials, the model of Cosserat continuum was applied. This model enables accounting for the influence of shear-rotation deformation of micro-particles of the medium. In the framework of Cosserat elasticity, on applying the Fourier transforms for time variable and developing the boundary integral equation method, solving of the non-stationary problem reduces to the system of singular integral equations, where the components that determine the influence of shear-rotation deformations are selected. The numerical calculations were performed for the foam medium with positive and negative Poisson’s ratio for different values of time duration of impulse. Developed approach can be used to predict the mechanical behaviour of foam auxetic materials obtained at different values of a volumetric compression ratio under the action of time variable load based on analysis of the distribution of radial stresses in foam medium. |
topic |
stress state foam poisson’s ratio cosserat elasticity |
url |
https://doi.org/10.2478/ama-2020-0011 |
work_keys_str_mv |
AT sulymheorhiy modellingofimpulseloadinfluenceonthestressstateoffoammaterialswithpositiveandnegativepoissonsratio AT mikulicholena modellingofimpulseloadinfluenceonthestressstateoffoammaterialswithpositiveandnegativepoissonsratio AT shvabyukvasyl modellingofimpulseloadinfluenceonthestressstateoffoammaterialswithpositiveandnegativepoissonsratio |
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