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Elasto-Plastic Fracture Mechanics Analysis of the Effect of Shot Peening on 300M Steel

A modified J-integral calculation method is adopted to fix the problem of the quantitative evaluation of the crack propagation of shot-peened structures. Considering the residual stress, residual strain, and residual strain energy, the effect of shot peening on the J-integral parameters of semi-elli...

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Autores principales: Hou, Shuai, Cai, Zhihai, Zhu, Youli, Zhao, Qizhi, Chen, Yong, Gao, Han, Wang, Hongbo, Li, Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8269553/
https://www.ncbi.nlm.nih.gov/pubmed/34201930
http://dx.doi.org/10.3390/ma14133538
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author Hou, Shuai
Cai, Zhihai
Zhu, Youli
Zhao, Qizhi
Chen, Yong
Gao, Han
Wang, Hongbo
Li, Jing
author_facet Hou, Shuai
Cai, Zhihai
Zhu, Youli
Zhao, Qizhi
Chen, Yong
Gao, Han
Wang, Hongbo
Li, Jing
author_sort Hou, Shuai
collection PubMed
description A modified J-integral calculation method is adopted to fix the problem of the quantitative evaluation of the crack propagation of shot-peened structures. Considering the residual stress, residual strain, and residual strain energy, the effect of shot peening on the J-integral parameters of semi-elliptic surface crack fronts is quantitatively calculated and a method is provided for the performance evaluation of the shot peening layer. First, the shot peening process is simulated, then the fatigue crack is generated by changing the constraint condition and a far-field load is applied to calculate the J-integral parameters, crack propagation rate, and crack kinking angle. The effects of different crack depths and shot velocities on the fracture parameters are analyzed. The results show that the reduction in the J-integral value after shot peening decreases with the increase in the crack depth when the shot velocity is a certain value, which indicates that shot peening is more beneficial for suppressing the fatigue crack propagation. When the crack depth is greater than the depth of the compressive stress layer, shot peening accelerates the crack propagation. The reduction in the J-integral value decreases with the increase in shot velocity when the crack depth is a certain value; therefore, increasing shot velocity is more beneficial for retarding fatigue crack propagation.
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spelling pubmed-82695532021-07-10 Elasto-Plastic Fracture Mechanics Analysis of the Effect of Shot Peening on 300M Steel Hou, Shuai Cai, Zhihai Zhu, Youli Zhao, Qizhi Chen, Yong Gao, Han Wang, Hongbo Li, Jing Materials (Basel) Article A modified J-integral calculation method is adopted to fix the problem of the quantitative evaluation of the crack propagation of shot-peened structures. Considering the residual stress, residual strain, and residual strain energy, the effect of shot peening on the J-integral parameters of semi-elliptic surface crack fronts is quantitatively calculated and a method is provided for the performance evaluation of the shot peening layer. First, the shot peening process is simulated, then the fatigue crack is generated by changing the constraint condition and a far-field load is applied to calculate the J-integral parameters, crack propagation rate, and crack kinking angle. The effects of different crack depths and shot velocities on the fracture parameters are analyzed. The results show that the reduction in the J-integral value after shot peening decreases with the increase in the crack depth when the shot velocity is a certain value, which indicates that shot peening is more beneficial for suppressing the fatigue crack propagation. When the crack depth is greater than the depth of the compressive stress layer, shot peening accelerates the crack propagation. The reduction in the J-integral value decreases with the increase in shot velocity when the crack depth is a certain value; therefore, increasing shot velocity is more beneficial for retarding fatigue crack propagation. MDPI 2021-06-25 /pmc/articles/PMC8269553/ /pubmed/34201930 http://dx.doi.org/10.3390/ma14133538 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hou, Shuai
Cai, Zhihai
Zhu, Youli
Zhao, Qizhi
Chen, Yong
Gao, Han
Wang, Hongbo
Li, Jing
Elasto-Plastic Fracture Mechanics Analysis of the Effect of Shot Peening on 300M Steel
title Elasto-Plastic Fracture Mechanics Analysis of the Effect of Shot Peening on 300M Steel
title_full Elasto-Plastic Fracture Mechanics Analysis of the Effect of Shot Peening on 300M Steel
title_fullStr Elasto-Plastic Fracture Mechanics Analysis of the Effect of Shot Peening on 300M Steel
title_full_unstemmed Elasto-Plastic Fracture Mechanics Analysis of the Effect of Shot Peening on 300M Steel
title_short Elasto-Plastic Fracture Mechanics Analysis of the Effect of Shot Peening on 300M Steel
title_sort elasto-plastic fracture mechanics analysis of the effect of shot peening on 300m steel
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8269553/
https://www.ncbi.nlm.nih.gov/pubmed/34201930
http://dx.doi.org/10.3390/ma14133538
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