Experimental analysis of surface roughness in the cutting process of sugar palm fiber reinforced unsaturated polyester composites with laser beam and abrasive water jet cutting technologies

This research aims to investigate the effects of the input parameters on the surface roughness as output parameters of CO2 laser and abrasive water jet (AWJ) machining technologies utilized in cutting sugar palm fiber reinforced unsaturated polyester (SPF-UPE) composite of three specimen thicknesses...

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Main Authors: Masoud, Fathi, Sapuan, Salit Mohd, Anuar Mohd Ariffin, Mohd Khairol, Nukman, Yusoff, Bayraktar, Emin
Format: Article
Published: King Mongkut's University of Technology North Bangkok 2022
Online Access:http://psasir.upm.edu.my/id/eprint/107826/
https://ojs.kmutnb.ac.th/index.php/ijst/article/view/6353
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Institution: Universiti Putra Malaysia
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spelling my.upm.eprints.1078262024-11-05T02:42:06Z http://psasir.upm.edu.my/id/eprint/107826/ Experimental analysis of surface roughness in the cutting process of sugar palm fiber reinforced unsaturated polyester composites with laser beam and abrasive water jet cutting technologies Masoud, Fathi Sapuan, Salit Mohd Anuar Mohd Ariffin, Mohd Khairol Nukman, Yusoff Bayraktar, Emin This research aims to investigate the effects of the input parameters on the surface roughness as output parameters of CO2 laser and abrasive water jet (AWJ) machining technologies utilized in cutting sugar palm fiber reinforced unsaturated polyester (SPF-UPE) composite of three specimen thicknesses. The objective of this study is to collect data involve the optimal parameters of these technologies regarding the surface roughness response. The motive was to avoid defects arising use in the conventional cutting techniques. In the AWJ technique, stand-offdistance, traverse speed, and water pressure were chosen as variable input parameters to optimize the surface roughness, whereas laser power, traverse speed, and gas pressure were the variable input parameters in the CO2 laser cutting technique. Taguchi’s approach was used to estimate the input parameter’s levels that produce the best surface roughness. Analysis of variation (ANOVA) was used to determine the contribution of every single input processing parameter to the effect on the surface roughness response. Good surface roughness responses could be attained by applying the optimum input parameters determined in this study. The experimental results of the current research provide practical data for the cutting of SPF-UPE composites with CO2 laser and AWJ machining techniques, and the findings can be used as a good starting point for the testing of other similar composites under the same cutting conditions King Mongkut's University of Technology North Bangkok 2022-11-08 Article PeerReviewed Masoud, Fathi and Sapuan, Salit Mohd and Anuar Mohd Ariffin, Mohd Khairol and Nukman, Yusoff and Bayraktar, Emin (2022) Experimental analysis of surface roughness in the cutting process of sugar palm fiber reinforced unsaturated polyester composites with laser beam and abrasive water jet cutting technologies. Applied Science and Engineering Progress, 16 (3). pp. 1-17. ISSN 2672-9156; eISSN: 2673-0421 https://ojs.kmutnb.ac.th/index.php/ijst/article/view/6353 10.14416/j.asep.2022.11.001
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
description This research aims to investigate the effects of the input parameters on the surface roughness as output parameters of CO2 laser and abrasive water jet (AWJ) machining technologies utilized in cutting sugar palm fiber reinforced unsaturated polyester (SPF-UPE) composite of three specimen thicknesses. The objective of this study is to collect data involve the optimal parameters of these technologies regarding the surface roughness response. The motive was to avoid defects arising use in the conventional cutting techniques. In the AWJ technique, stand-offdistance, traverse speed, and water pressure were chosen as variable input parameters to optimize the surface roughness, whereas laser power, traverse speed, and gas pressure were the variable input parameters in the CO2 laser cutting technique. Taguchi’s approach was used to estimate the input parameter’s levels that produce the best surface roughness. Analysis of variation (ANOVA) was used to determine the contribution of every single input processing parameter to the effect on the surface roughness response. Good surface roughness responses could be attained by applying the optimum input parameters determined in this study. The experimental results of the current research provide practical data for the cutting of SPF-UPE composites with CO2 laser and AWJ machining techniques, and the findings can be used as a good starting point for the testing of other similar composites under the same cutting conditions
format Article
author Masoud, Fathi
Sapuan, Salit Mohd
Anuar Mohd Ariffin, Mohd Khairol
Nukman, Yusoff
Bayraktar, Emin
spellingShingle Masoud, Fathi
Sapuan, Salit Mohd
Anuar Mohd Ariffin, Mohd Khairol
Nukman, Yusoff
Bayraktar, Emin
Experimental analysis of surface roughness in the cutting process of sugar palm fiber reinforced unsaturated polyester composites with laser beam and abrasive water jet cutting technologies
author_facet Masoud, Fathi
Sapuan, Salit Mohd
Anuar Mohd Ariffin, Mohd Khairol
Nukman, Yusoff
Bayraktar, Emin
author_sort Masoud, Fathi
title Experimental analysis of surface roughness in the cutting process of sugar palm fiber reinforced unsaturated polyester composites with laser beam and abrasive water jet cutting technologies
title_short Experimental analysis of surface roughness in the cutting process of sugar palm fiber reinforced unsaturated polyester composites with laser beam and abrasive water jet cutting technologies
title_full Experimental analysis of surface roughness in the cutting process of sugar palm fiber reinforced unsaturated polyester composites with laser beam and abrasive water jet cutting technologies
title_fullStr Experimental analysis of surface roughness in the cutting process of sugar palm fiber reinforced unsaturated polyester composites with laser beam and abrasive water jet cutting technologies
title_full_unstemmed Experimental analysis of surface roughness in the cutting process of sugar palm fiber reinforced unsaturated polyester composites with laser beam and abrasive water jet cutting technologies
title_sort experimental analysis of surface roughness in the cutting process of sugar palm fiber reinforced unsaturated polyester composites with laser beam and abrasive water jet cutting technologies
publisher King Mongkut's University of Technology North Bangkok
publishDate 2022
url http://psasir.upm.edu.my/id/eprint/107826/
https://ojs.kmutnb.ac.th/index.php/ijst/article/view/6353
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