Influence of Vibratory Finishing Process by Incorporating Abrasive Ceramics and Glassy Materials on Surface Roughness of CK45 Steel

The vibratory finishing is one of the important mass finishing processes. This can be applied for finishing many metallic and non- metallic components using abrasive materials such as steel, ceramic, natural materials and etc. The vibratory finishing process is used for some purposes such as surface...

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Main Authors: Payam Saraeian, Mostafa Gholami, Amir Behagh, Omid Behagh, Hamid Reza Javadinejad, Mohammad Mahdieh
Format: Article
Language:English
Published: Islamic Azad University-Isfahan (Khorasgan) Branch 2016-12-01
Series:International Journal of Advanced Design and Manufacturing Technology
Subjects:
Online Access:https://admt.isfahan.iau.ir/article_534986_4601a850ba38692f46094f7c1cff5d97.pdf
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author Payam Saraeian
Mostafa Gholami
Amir Behagh
Omid Behagh
Hamid Reza Javadinejad
Mohammad Mahdieh
author_facet Payam Saraeian
Mostafa Gholami
Amir Behagh
Omid Behagh
Hamid Reza Javadinejad
Mohammad Mahdieh
author_sort Payam Saraeian
collection DOAJ
description The vibratory finishing is one of the important mass finishing processes. This can be applied for finishing many metallic and non- metallic components using abrasive materials such as steel, ceramic, natural materials and etc. The vibratory finishing process is used for some purposes such as surfaces polishing, deburring, oxide layer removing and rounding the edges. Evaluation of surface roughness changes with time that is one of the important parameters during the vibratory finishing process. In this study, the effects of the working time and abrasive materials are investigated on the surface roughness changes of CK45 steel samples. The ceramic, glass and mixed abrasive particles are used as the abrasive media. The experiments are performed at different time from 10 to 120 minutes in the dry environment. Finally, the surface roughness values of samples were measured and then fitted by a regression equation for description of the surface roughness changes with time. According to the results, the maximum surface finish was obtained after 120 minutes by using mixed abrasive materials. The surface roughness improved approximately 60%.
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spelling doaj.art-eff868e8776c4bdb96a8292bc3d26ba82023-10-18T09:19:10ZengIslamic Azad University-Isfahan (Khorasgan) BranchInternational Journal of Advanced Design and Manufacturing Technology2252-04062383-44472016-12-019416534986Influence of Vibratory Finishing Process by Incorporating Abrasive Ceramics and Glassy Materials on Surface Roughness of CK45 SteelPayam Saraeian0Mostafa Gholami1Amir Behagh2Omid Behagh3Hamid Reza Javadinejad4Mohammad Mahdieh5Department of Materials Engineering, Islamic Azad University of Najafabad Branch, Isfahan, IranDepartment of Materials Engineering, Islamic Azad University of Najafabad Branch, Isfahan, IranArshan Sanat Jam Co. ltd, Isfahan, IranArshan Sanat Jam Co. ltd, Isfahan, IranDepartment of Materials Engineering, Isfahan University of Technology, Isfahan, IranUniverSchool of Mechanical Engineering, College of Engineering, University of Tehran, Tehran, Iran sity of Tehran (UT)The vibratory finishing is one of the important mass finishing processes. This can be applied for finishing many metallic and non- metallic components using abrasive materials such as steel, ceramic, natural materials and etc. The vibratory finishing process is used for some purposes such as surfaces polishing, deburring, oxide layer removing and rounding the edges. Evaluation of surface roughness changes with time that is one of the important parameters during the vibratory finishing process. In this study, the effects of the working time and abrasive materials are investigated on the surface roughness changes of CK45 steel samples. The ceramic, glass and mixed abrasive particles are used as the abrasive media. The experiments are performed at different time from 10 to 120 minutes in the dry environment. Finally, the surface roughness values of samples were measured and then fitted by a regression equation for description of the surface roughness changes with time. According to the results, the maximum surface finish was obtained after 120 minutes by using mixed abrasive materials. The surface roughness improved approximately 60%.https://admt.isfahan.iau.ir/article_534986_4601a850ba38692f46094f7c1cff5d97.pdfabrasive particlesmass finishingsurface roughnessvibratory finishing
spellingShingle Payam Saraeian
Mostafa Gholami
Amir Behagh
Omid Behagh
Hamid Reza Javadinejad
Mohammad Mahdieh
Influence of Vibratory Finishing Process by Incorporating Abrasive Ceramics and Glassy Materials on Surface Roughness of CK45 Steel
International Journal of Advanced Design and Manufacturing Technology
abrasive particles
mass finishing
surface roughness
vibratory finishing
title Influence of Vibratory Finishing Process by Incorporating Abrasive Ceramics and Glassy Materials on Surface Roughness of CK45 Steel
title_full Influence of Vibratory Finishing Process by Incorporating Abrasive Ceramics and Glassy Materials on Surface Roughness of CK45 Steel
title_fullStr Influence of Vibratory Finishing Process by Incorporating Abrasive Ceramics and Glassy Materials on Surface Roughness of CK45 Steel
title_full_unstemmed Influence of Vibratory Finishing Process by Incorporating Abrasive Ceramics and Glassy Materials on Surface Roughness of CK45 Steel
title_short Influence of Vibratory Finishing Process by Incorporating Abrasive Ceramics and Glassy Materials on Surface Roughness of CK45 Steel
title_sort influence of vibratory finishing process by incorporating abrasive ceramics and glassy materials on surface roughness of ck45 steel
topic abrasive particles
mass finishing
surface roughness
vibratory finishing
url https://admt.isfahan.iau.ir/article_534986_4601a850ba38692f46094f7c1cff5d97.pdf
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