Development of a model of a homogeneous continuous medium based on the material with defects in the form of hollows

In a body of the billet received by casting, inevitably there are defects accompanying this process: blisters, hollows and other discontinuities affecting the deformation and strength properties of the metal. The experience showed that direct calculation of the stress-strain state by the FEM of the...

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Main Authors: Poroshin Vadim, Shlishevsky Andrey, Tsybulya Ksenia
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201712902017
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spelling doaj-fa34fa8457ff41a1937111a31b6d5ed82021-08-11T14:29:35ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011290201710.1051/matecconf/201712902017matecconf_icmtmte2017_02017Development of a model of a homogeneous continuous medium based on the material with defects in the form of hollowsPoroshin VadimShlishevsky AndreyTsybulya KseniaIn a body of the billet received by casting, inevitably there are defects accompanying this process: blisters, hollows and other discontinuities affecting the deformation and strength properties of the metal. The experience showed that direct calculation of the stress-strain state by the FEM of the body with a defective structure requires the use of supercomputer-level computing power. A medium with multiple randomly distributed discontinuities was schematized by a regular structure formed by a set of elements in the form of a regular tetrahedron with spherical hollows at its vertices. The proposed technique makes it possible to create the model of a continuous homogeneous medium, which is equivalent in its deformation properties to the original discontinuous material. Using this approach was got a power-law approximation of the stress-strain curve of the model medium. The last one represents the basic characteristic of the material, both under single-shot loading and (if we take into account the cyclic hardening) in analyzing the kinetics of the stress and strain fields’ under repeatedly-variable loading. The discontinuity of the material was fixed using the Kolmogorov’s deformation criterion of ductile fracture. This criterion was applied in evaluating the limit state of the valve chamber under operating conditions.https://doi.org/10.1051/matecconf/201712902017
collection DOAJ
language English
format Article
sources DOAJ
author Poroshin Vadim
Shlishevsky Andrey
Tsybulya Ksenia
spellingShingle Poroshin Vadim
Shlishevsky Andrey
Tsybulya Ksenia
Development of a model of a homogeneous continuous medium based on the material with defects in the form of hollows
MATEC Web of Conferences
author_facet Poroshin Vadim
Shlishevsky Andrey
Tsybulya Ksenia
author_sort Poroshin Vadim
title Development of a model of a homogeneous continuous medium based on the material with defects in the form of hollows
title_short Development of a model of a homogeneous continuous medium based on the material with defects in the form of hollows
title_full Development of a model of a homogeneous continuous medium based on the material with defects in the form of hollows
title_fullStr Development of a model of a homogeneous continuous medium based on the material with defects in the form of hollows
title_full_unstemmed Development of a model of a homogeneous continuous medium based on the material with defects in the form of hollows
title_sort development of a model of a homogeneous continuous medium based on the material with defects in the form of hollows
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2017-01-01
description In a body of the billet received by casting, inevitably there are defects accompanying this process: blisters, hollows and other discontinuities affecting the deformation and strength properties of the metal. The experience showed that direct calculation of the stress-strain state by the FEM of the body with a defective structure requires the use of supercomputer-level computing power. A medium with multiple randomly distributed discontinuities was schematized by a regular structure formed by a set of elements in the form of a regular tetrahedron with spherical hollows at its vertices. The proposed technique makes it possible to create the model of a continuous homogeneous medium, which is equivalent in its deformation properties to the original discontinuous material. Using this approach was got a power-law approximation of the stress-strain curve of the model medium. The last one represents the basic characteristic of the material, both under single-shot loading and (if we take into account the cyclic hardening) in analyzing the kinetics of the stress and strain fields’ under repeatedly-variable loading. The discontinuity of the material was fixed using the Kolmogorov’s deformation criterion of ductile fracture. This criterion was applied in evaluating the limit state of the valve chamber under operating conditions.
url https://doi.org/10.1051/matecconf/201712902017
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AT tsybulyaksenia developmentofamodelofahomogeneouscontinuousmediumbasedonthematerialwithdefectsintheformofhollows
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