Numerical simulation of ZrO2(Y2O3) ceramic plate penetration by cylindrical plunger

In this paper dynamic fracture process due to high-speed impact of steel plunger into ceramic sample is simulated. The developed numerical model is based on finite element method and a concept of incubation time criterion, which is proven to be applicable in order to predict brittle fracture under h...

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Main Authors: Bratov V., Kazarinov N., Petrov Y.
Format: Article
Language:English
Published: EDP Sciences 2015-01-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20159404056
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spelling doaj-04f81e06987243a18f1a64a528b5eceb2021-08-02T10:20:27ZengEDP SciencesEPJ Web of Conferences2100-014X2015-01-01940405610.1051/epjconf/20159404056epjconf-dymat2015_04056Numerical simulation of ZrO2(Y2O3) ceramic plate penetration by cylindrical plungerBratov V.Kazarinov N.0Petrov Y.Saint Petersburg State UniversityIn this paper dynamic fracture process due to high-speed impact of steel plunger into ceramic sample is simulated. The developed numerical model is based on finite element method and a concept of incubation time criterion, which is proven to be applicable in order to predict brittle fracture under high-rate deformation. Simulations were performed for ZrO2(Y2O3) ceramic plates. To characterize fracture process quantitatively fracture surface area parameter is introduced and controlled. This parameter gives area of new surface created during dynamic fracture of a sample and is essentially connected to energetic peculiarities of fracture process. Multiple simulations with various parameters made it possible to explore dependencies of fracture area on plunger velocity and material properties. Energy required to create unit of fracture area at fracture initiation (dynamic analogue of Griffith's surface energy) was evaluated and was found to be an order of magnitude higher as comparing to its static value.http://dx.doi.org/10.1051/epjconf/20159404056
collection DOAJ
language English
format Article
sources DOAJ
author Bratov V.
Kazarinov N.
Petrov Y.
spellingShingle Bratov V.
Kazarinov N.
Petrov Y.
Numerical simulation of ZrO2(Y2O3) ceramic plate penetration by cylindrical plunger
EPJ Web of Conferences
author_facet Bratov V.
Kazarinov N.
Petrov Y.
author_sort Bratov V.
title Numerical simulation of ZrO2(Y2O3) ceramic plate penetration by cylindrical plunger
title_short Numerical simulation of ZrO2(Y2O3) ceramic plate penetration by cylindrical plunger
title_full Numerical simulation of ZrO2(Y2O3) ceramic plate penetration by cylindrical plunger
title_fullStr Numerical simulation of ZrO2(Y2O3) ceramic plate penetration by cylindrical plunger
title_full_unstemmed Numerical simulation of ZrO2(Y2O3) ceramic plate penetration by cylindrical plunger
title_sort numerical simulation of zro2(y2o3) ceramic plate penetration by cylindrical plunger
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2015-01-01
description In this paper dynamic fracture process due to high-speed impact of steel plunger into ceramic sample is simulated. The developed numerical model is based on finite element method and a concept of incubation time criterion, which is proven to be applicable in order to predict brittle fracture under high-rate deformation. Simulations were performed for ZrO2(Y2O3) ceramic plates. To characterize fracture process quantitatively fracture surface area parameter is introduced and controlled. This parameter gives area of new surface created during dynamic fracture of a sample and is essentially connected to energetic peculiarities of fracture process. Multiple simulations with various parameters made it possible to explore dependencies of fracture area on plunger velocity and material properties. Energy required to create unit of fracture area at fracture initiation (dynamic analogue of Griffith's surface energy) was evaluated and was found to be an order of magnitude higher as comparing to its static value.
url http://dx.doi.org/10.1051/epjconf/20159404056
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AT kazarinovn numericalsimulationofzro2y2o3ceramicplatepenetrationbycylindricalplunger
AT petrovy numericalsimulationofzro2y2o3ceramicplatepenetrationbycylindricalplunger
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