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Effect of the features of functionalized structure on elastic properties and strength of partially-filled brittle porous materials Ig. S. Konovalenko, E. V. Shilko, Iv. S. Konovalenko, E. M. Vodopjyanov

Contributor(s): Konovalenko, Igor S | Konovalenko, Ivan S | Vodopjyanov, Egor M | Shilko, Evgeny VMaterial type: ArticleArticleSubject(s): метод подвижных клеточных автоматов | хрупкие пористые материалы | механические свойстваGenre/Form: статьи в журналах Online resources: Click here to access online In: AIP Conference Proceedings Vol. 1783. P. 020098-1-020098-4Abstract: A two-scale mechanical model of brittle porous material partially filled with plastic filler (inclusions) was developed within the framework of the formalism of movable cellular automaton method. The model was applied to study the mechanical properties of mesoscopic samples with a linear distribution of the local porosity in the depth of the material. Calculation results showed essentially nonlinear dependence of their elastic and strength properties on the degree of pore space filling. It is found that depending on the sign of the gradient of porosity the value of shear strength of partially filled samples can significantly increase or remain constant with increase in the value of the degree of filling.
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A two-scale mechanical model of brittle porous material partially filled with plastic filler (inclusions) was developed within the framework of the formalism of movable cellular automaton method. The model was applied to study the mechanical properties of mesoscopic samples with a linear distribution of the local porosity in the depth of the material. Calculation results showed essentially nonlinear dependence of their elastic and strength properties on the degree of pore space filling. It is found that depending on the sign of the gradient of porosity the value of shear strength of partially filled samples can significantly increase or remain constant with increase in the value of the degree of filling.

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