Influence of shot peening on the microstructure and friction-wear performance of CF53 steel

In order to further enhance the wear resistance of the camshaft surface, this study conducted shot peening reinforcement on CF53 steel. The research involves the analysis of microstructure, microhardness, and residual stress evolution. Additionally, a pin-on-disk friction and wear test machine was u...

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Published inPloS one Vol. 20; no. 6; p. e0317410
Main Authors Cai, Qiushen, Guan, Huashen, Zhang, Junjie, Zhang, Xiaoguang, Duan, Chenfeng
Format Journal Article
LanguageEnglish
Published United States Public Library of Science 02.06.2025
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Abstract In order to further enhance the wear resistance of the camshaft surface, this study conducted shot peening reinforcement on CF53 steel. The research involves the analysis of microstructure, microhardness, and residual stress evolution. Additionally, a pin-on-disk friction and wear test machine was used to investigate the influence of shot peening on the friction-wear characteristics of CF53 steel. The results show that a certain depth of plastic deformation layer is formed on the surface after shot peening, accompanied by an increase in surface roughness. With the increase of shot peening pressure, the surface roughness, microhardness, and residual stress values of the samples correspondingly increase. Shot peening treatment significantly improves the friction-wear performance of CF53 steel, with a reduction of 22.5% and 54.6% in the friction coefficient and wear rate for SP3 and SP4 groups, respectively, compared to untreated samples. The wear mechanism of untreated samples is characterized by severe fatigue wear with prominent features of plowing grooves and cracks. In contrast, the wear mechanism of peened samples shifts to fatigue wear dominated by delamination.
AbstractList In order to further enhance the wear resistance of the camshaft surface, this study conducted shot peening reinforcement on CF53 steel. The research involves the analysis of microstructure, microhardness, and residual stress evolution. Additionally, a pin-on-disk friction and wear test machine was used to investigate the influence of shot peening on the friction-wear characteristics of CF53 steel. The results show that a certain depth of plastic deformation layer is formed on the surface after shot peening, accompanied by an increase in surface roughness. With the increase of shot peening pressure, the surface roughness, microhardness, and residual stress values of the samples correspondingly increase. Shot peening treatment significantly improves the friction-wear performance of CF53 steel, with a reduction of 22.5% and 54.6% in the friction coefficient and wear rate for SP3 and SP4 groups, respectively, compared to untreated samples. The wear mechanism of untreated samples is characterized by severe fatigue wear with prominent features of plowing grooves and cracks. In contrast, the wear mechanism of peened samples shifts to fatigue wear dominated by delamination.
In order to further enhance the wear resistance of the camshaft surface, this study conducted shot peening reinforcement on CF53 steel. The research involves the analysis of microstructure, microhardness, and residual stress evolution. Additionally, a pin-on-disk friction and wear test machine was used to investigate the influence of shot peening on the friction-wear characteristics of CF53 steel. The results show that a certain depth of plastic deformation layer is formed on the surface after shot peening, accompanied by an increase in surface roughness. With the increase of shot peening pressure, the surface roughness, microhardness, and residual stress values of the samples correspondingly increase. Shot peening treatment significantly improves the friction-wear performance of CF53 steel, with a reduction of 22.5% and 54.6% in the friction coefficient and wear rate for SP3 and SP4 groups, respectively, compared to untreated samples. The wear mechanism of untreated samples is characterized by severe fatigue wear with prominent features of plowing grooves and cracks. In contrast, the wear mechanism of peened samples shifts to fatigue wear dominated by delamination.In order to further enhance the wear resistance of the camshaft surface, this study conducted shot peening reinforcement on CF53 steel. The research involves the analysis of microstructure, microhardness, and residual stress evolution. Additionally, a pin-on-disk friction and wear test machine was used to investigate the influence of shot peening on the friction-wear characteristics of CF53 steel. The results show that a certain depth of plastic deformation layer is formed on the surface after shot peening, accompanied by an increase in surface roughness. With the increase of shot peening pressure, the surface roughness, microhardness, and residual stress values of the samples correspondingly increase. Shot peening treatment significantly improves the friction-wear performance of CF53 steel, with a reduction of 22.5% and 54.6% in the friction coefficient and wear rate for SP3 and SP4 groups, respectively, compared to untreated samples. The wear mechanism of untreated samples is characterized by severe fatigue wear with prominent features of plowing grooves and cracks. In contrast, the wear mechanism of peened samples shifts to fatigue wear dominated by delamination.
Audience Academic
Author Guan, Huashen
Zhang, Junjie
Duan, Chenfeng
Zhang, Xiaoguang
Cai, Qiushen
AuthorAffiliation 2 School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou, China
Himachal Pradesh University, INDIA
1 Jiangmen Power Supply Bureau of Guangdong Power Grid Co. Ltd., Jiangmen, Guangdong, China
AuthorAffiliation_xml – name: Himachal Pradesh University, INDIA
– name: 1 Jiangmen Power Supply Bureau of Guangdong Power Grid Co. Ltd., Jiangmen, Guangdong, China
– name: 2 School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou, China
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Snippet In order to further enhance the wear resistance of the camshaft surface, this study conducted shot peening reinforcement on CF53 steel. The research involves...
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StartPage e0317410
SubjectTerms Analysis
Biology and Life Sciences
Carbon
Coefficient of friction
Composition
Deformation
Diesel engines
Engineering and Technology
Fatigue wear
Friction
Grooves
Hardness
High carbon steels
Kinematics
Load
Lubricating oils
Materials Testing
Methods
Microhardness
Microstructural analysis
Microstructure
Morphology
Physical Sciences
Plastic deformation
Plowing
Residual stress
Shot peening
Steel
Steel - chemistry
Stress, Mechanical
Surface Properties
Surface roughness
Viscosity
Wear mechanisms
Wear rate
Wear resistance
Wear tests
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Title Influence of shot peening on the microstructure and friction-wear performance of CF53 steel
URI https://www.ncbi.nlm.nih.gov/pubmed/40455809
https://www.proquest.com/docview/3215034517
https://www.proquest.com/docview/3215235714
https://pubmed.ncbi.nlm.nih.gov/PMC12129164
https://doaj.org/article/066bbd24d4c94810a94ec5cdd163db0b
http://dx.doi.org/10.1371/journal.pone.0317410
Volume 20
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