Numerical modelling of hydraulically bonded mixture with rubber admixture due to applied mechanical loadings

In this paper the application of the Extended Finite Element Method (XFEM) to anticipate change of the behaviour of composite with complex internal structure after use of the admixtures was presented. The response to mechanical loadings of bent beams made of hydraulically bonded mixture with rubber...

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Main Authors: Daniel Pietras, Tomasz Sadowski
Format: Article
Language:English
Published: Lublin University of Technology 2017-12-01
Series:Budownictwo i Architektura
Subjects:
Online Access:https://ph.pollub.pl/index.php/bia/article/view/320
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author Daniel Pietras
Tomasz Sadowski
author_facet Daniel Pietras
Tomasz Sadowski
author_sort Daniel Pietras
collection DOAJ
description In this paper the application of the Extended Finite Element Method (XFEM) to anticipate change of the behaviour of composite with complex internal structure after use of the admixtures was presented. The response to mechanical loadings of bent beams made of hydraulically bonded mixture with rubber admixture was considered. The impact of the rubber granulate on the value of fracture energy was analysed. Moreover, the influence of an interfacial transmission zone quality on the achieved effect was assessed. Calculations were conducted by means of the muli-scale numerical model which was built in ABAQUS finite element method environment. The results derived indicate beneficial effect of rubber granulate on fracture energy of hydraulically bonded mixture.
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spelling doaj.art-f684531cb2d247c5a82643fd2e3b65192024-03-03T04:53:43ZengLublin University of TechnologyBudownictwo i Architektura1899-06652544-32752017-12-0116310.24358/Bud-Arch_17_163_09Bud-Arch_17_163_09Numerical modelling of hydraulically bonded mixture with rubber admixture due to applied mechanical loadingsDaniel Pietras0Tomasz Sadowski1Department of Solid Mechanics, Faculty of Civil Engineering and Architecture, University of Technology in LublinDepartment of Solid Mechanics, Faculty of Civil Engineering and Architecture, University of Technology in LublinIn this paper the application of the Extended Finite Element Method (XFEM) to anticipate change of the behaviour of composite with complex internal structure after use of the admixtures was presented. The response to mechanical loadings of bent beams made of hydraulically bonded mixture with rubber admixture was considered. The impact of the rubber granulate on the value of fracture energy was analysed. Moreover, the influence of an interfacial transmission zone quality on the achieved effect was assessed. Calculations were conducted by means of the muli-scale numerical model which was built in ABAQUS finite element method environment. The results derived indicate beneficial effect of rubber granulate on fracture energy of hydraulically bonded mixture.https://ph.pollub.pl/index.php/bia/article/view/320Virtual testXFEMFEMmulti-scale modelling
spellingShingle Daniel Pietras
Tomasz Sadowski
Numerical modelling of hydraulically bonded mixture with rubber admixture due to applied mechanical loadings
Budownictwo i Architektura
Virtual test
XFEM
FEM
multi-scale modelling
title Numerical modelling of hydraulically bonded mixture with rubber admixture due to applied mechanical loadings
title_full Numerical modelling of hydraulically bonded mixture with rubber admixture due to applied mechanical loadings
title_fullStr Numerical modelling of hydraulically bonded mixture with rubber admixture due to applied mechanical loadings
title_full_unstemmed Numerical modelling of hydraulically bonded mixture with rubber admixture due to applied mechanical loadings
title_short Numerical modelling of hydraulically bonded mixture with rubber admixture due to applied mechanical loadings
title_sort numerical modelling of hydraulically bonded mixture with rubber admixture due to applied mechanical loadings
topic Virtual test
XFEM
FEM
multi-scale modelling
url https://ph.pollub.pl/index.php/bia/article/view/320
work_keys_str_mv AT danielpietras numericalmodellingofhydraulicallybondedmixturewithrubberadmixtureduetoappliedmechanicalloadings
AT tomaszsadowski numericalmodellingofhydraulicallybondedmixturewithrubberadmixtureduetoappliedmechanicalloadings