Effect of SiC Particles on Fatigue Life of AL-Matrix Composites

In the present study, a micromechanical modeling approach based on volumetric element was considered from a composite consisted of three components: matrix, particle, and particle-matrix intermediate phase. In order to predict the behavior of the damage evolution in the composite, the particle-matri...

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Main Authors: Z. Hosseini Tabar, F. Barati
Format: Article
Language:English
Published: Bu-Ali Sina University 2019-09-01
Series:Journal of Stress Analysis
Subjects:
Online Access:https://jrstan.basu.ac.ir/article_2992_bc47da94b81a85f35f79cf229c173a69.pdf
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spelling doaj-3f04b845516144f6bc944147114914cf2020-11-25T01:15:27ZengBu-Ali Sina UniversityJournal of Stress Analysis2588-25972588-30542019-09-0141738810.22084/jrstan.2019.19829.11022992Effect of SiC Particles on Fatigue Life of AL-Matrix CompositesZ. Hosseini Tabar0F. Barati1Mechanical Engineering Department, Islamic Azad University, Hamedan Branch, Hamedan, Iran.Mechanical Engineering Department, Islamic Azad University, Hamedan Branch, Hamedan, Iran.In the present study, a micromechanical modeling approach based on volumetric element was considered from a composite consisted of three components: matrix, particle, and particle-matrix intermediate phase. In order to predict the behavior of the damage evolution in the composite, the particle-matrix intermediate phase was modeled based on the cohesive zone model and disruptive elastoplastic behavior was considered for matrix. In order to study the efficiency of the implemented model, at first, modeling processes were conducted using the USERMAT code in finite element ANSYS software, and then the growth of fatigue damage was investigated in the AL composite reinforced with SiC particles. For this purpose, after the study of characterization static constant of cohesive zone model, validation of the static model was approved. S-N curve obtained from experimental results for pure AL were used for  Characterization fatigue constants of the matrix. Comparison of the obtained results from finite element analysis with that of experiment, justifies the capability of the employed model to predict the fatigue life of metal matrix composites reinforced with particles in other conditions and is able to consider the effect of volume fraction in predicting fatigue life while the modelbenefits from the lowest tests for the characterization constants of model.https://jrstan.basu.ac.ir/article_2992_bc47da94b81a85f35f79cf229c173a69.pdffatigue lifecohesive zone modelmetal matrix compositeparticulate reinforcement
collection DOAJ
language English
format Article
sources DOAJ
author Z. Hosseini Tabar
F. Barati
spellingShingle Z. Hosseini Tabar
F. Barati
Effect of SiC Particles on Fatigue Life of AL-Matrix Composites
Journal of Stress Analysis
fatigue life
cohesive zone model
metal matrix composite
particulate reinforcement
author_facet Z. Hosseini Tabar
F. Barati
author_sort Z. Hosseini Tabar
title Effect of SiC Particles on Fatigue Life of AL-Matrix Composites
title_short Effect of SiC Particles on Fatigue Life of AL-Matrix Composites
title_full Effect of SiC Particles on Fatigue Life of AL-Matrix Composites
title_fullStr Effect of SiC Particles on Fatigue Life of AL-Matrix Composites
title_full_unstemmed Effect of SiC Particles on Fatigue Life of AL-Matrix Composites
title_sort effect of sic particles on fatigue life of al-matrix composites
publisher Bu-Ali Sina University
series Journal of Stress Analysis
issn 2588-2597
2588-3054
publishDate 2019-09-01
description In the present study, a micromechanical modeling approach based on volumetric element was considered from a composite consisted of three components: matrix, particle, and particle-matrix intermediate phase. In order to predict the behavior of the damage evolution in the composite, the particle-matrix intermediate phase was modeled based on the cohesive zone model and disruptive elastoplastic behavior was considered for matrix. In order to study the efficiency of the implemented model, at first, modeling processes were conducted using the USERMAT code in finite element ANSYS software, and then the growth of fatigue damage was investigated in the AL composite reinforced with SiC particles. For this purpose, after the study of characterization static constant of cohesive zone model, validation of the static model was approved. S-N curve obtained from experimental results for pure AL were used for  Characterization fatigue constants of the matrix. Comparison of the obtained results from finite element analysis with that of experiment, justifies the capability of the employed model to predict the fatigue life of metal matrix composites reinforced with particles in other conditions and is able to consider the effect of volume fraction in predicting fatigue life while the modelbenefits from the lowest tests for the characterization constants of model.
topic fatigue life
cohesive zone model
metal matrix composite
particulate reinforcement
url https://jrstan.basu.ac.ir/article_2992_bc47da94b81a85f35f79cf229c173a69.pdf
work_keys_str_mv AT zhosseinitabar effectofsicparticlesonfatiguelifeofalmatrixcomposites
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