Laser texturing of soda lime glass surface for hydrophobic surface in wenzel state
Glass surfaces tend to be hydrophilic when exposed to water resulting in a low water contact angle and high adhesion. Fabrication on a glass surface with low water adhesion can minimize the droplet’s adhesion conduct self-cleaning, and improve the cleanliness of the glass surface. This paper present...
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Universiti Malaysia Pahang
2024
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Online Access: | http://umpir.ump.edu.my/id/eprint/41329/1/Laser%20Texturing%20of%20Soda%20Lime%20Glass%20Surface%20for%20Hydrophobic%20Surface%20in%20Wenzel%20State.pdf http://umpir.ump.edu.my/id/eprint/41329/ https://doi.org/10.15282/ijame.21.1.2024.02.0848 https://doi.org/10.15282/ijame.21.1.2024.02.0848 |
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my.ump.umpir.413292024-07-01T01:08:30Z http://umpir.ump.edu.my/id/eprint/41329/ Laser texturing of soda lime glass surface for hydrophobic surface in wenzel state Nur Najwa, Khairul Azman Najihah, Zanian Syarifah Nur Aqida, Syed Ahmad Izwan, Ismail Salwani, Mohd Salleh T Technology (General) TA Engineering (General). Civil engineering (General) TJ Mechanical engineering and machinery TK Electrical engineering. Electronics Nuclear engineering TS Manufactures Glass surfaces tend to be hydrophilic when exposed to water resulting in a low water contact angle and high adhesion. Fabrication on a glass surface with low water adhesion can minimize the droplet’s adhesion conduct self-cleaning, and improve the cleanliness of the glass surface. This paper presents surface texturing of the soda-lime glass surface by laser processing three different patterns to improve water contact angle with low water adhesion on the modified glass surface. A design experiment method was developed to determine the effects of laser parameters on the glass surfaces. The laser parameters used are laser power between 0.45 and 1.05W and scanning speeds of 210, 420, and 600 mm/min. The effects of laser parameters on surface morphology, water contact angle measurement, and average surface roughness, Ra were investigated. The characterization was conducted for surface morphology, two-dimensional surface roughness profile, and water contact angle. The results show that the highest water contact angle obtained after laser texturing is up to 125.29° compared to the as-received surface with a contact angle of 32.35°. The highest water contact angle resulted from 420 mm/min scanning speed and 0.45 W of laser power, responding to the surface with a minimum range of Rax and Ray of 0.96 and 1.5 pm. These findings are significant for designing surface modification of self-cleaning glass surface applications like the automotive windscreens, and window panels for high-rise buildings. Universiti Malaysia Pahang 2024 Article PeerReviewed pdf en cc_by_nc_4 http://umpir.ump.edu.my/id/eprint/41329/1/Laser%20Texturing%20of%20Soda%20Lime%20Glass%20Surface%20for%20Hydrophobic%20Surface%20in%20Wenzel%20State.pdf Nur Najwa, Khairul Azman and Najihah, Zanian and Syarifah Nur Aqida, Syed Ahmad and Izwan, Ismail and Salwani, Mohd Salleh (2024) Laser texturing of soda lime glass surface for hydrophobic surface in wenzel state. International Journal of Automotive and Mechanical Engineering, 21 (1). pp. 10968-10980. ISSN 2229-8649. (Published) https://doi.org/10.15282/ijame.21.1.2024.02.0848 https://doi.org/10.15282/ijame.21.1.2024.02.0848 |
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T Technology (General) TA Engineering (General). Civil engineering (General) TJ Mechanical engineering and machinery TK Electrical engineering. Electronics Nuclear engineering TS Manufactures Nur Najwa, Khairul Azman Najihah, Zanian Syarifah Nur Aqida, Syed Ahmad Izwan, Ismail Salwani, Mohd Salleh Laser texturing of soda lime glass surface for hydrophobic surface in wenzel state |
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Glass surfaces tend to be hydrophilic when exposed to water resulting in a low water contact angle and high adhesion. Fabrication on a glass surface with low water adhesion can minimize the droplet’s adhesion conduct self-cleaning, and improve the cleanliness of the glass surface. This paper presents surface texturing of the soda-lime glass surface by laser processing three different patterns to improve water contact angle with low water adhesion on the modified glass surface. A design experiment method was developed to determine the effects of laser parameters on the glass surfaces. The laser parameters used are laser power between 0.45 and 1.05W and scanning speeds of 210, 420, and 600 mm/min. The effects of laser parameters on surface morphology, water contact angle measurement, and average surface roughness, Ra were investigated. The characterization was conducted for surface morphology, two-dimensional surface roughness profile, and water contact angle. The results show that the highest water contact angle obtained after laser texturing is up to 125.29° compared to the as-received surface with a contact angle of 32.35°. The highest water contact angle resulted from 420 mm/min scanning speed and 0.45 W of laser power, responding to the surface with a minimum range of Rax and Ray of 0.96 and 1.5 pm. These findings are significant for designing surface modification of self-cleaning glass surface applications like the automotive windscreens, and window panels for high-rise buildings. |
format |
Article |
author |
Nur Najwa, Khairul Azman Najihah, Zanian Syarifah Nur Aqida, Syed Ahmad Izwan, Ismail Salwani, Mohd Salleh |
author_facet |
Nur Najwa, Khairul Azman Najihah, Zanian Syarifah Nur Aqida, Syed Ahmad Izwan, Ismail Salwani, Mohd Salleh |
author_sort |
Nur Najwa, Khairul Azman |
title |
Laser texturing of soda lime glass surface for hydrophobic surface in wenzel state |
title_short |
Laser texturing of soda lime glass surface for hydrophobic surface in wenzel state |
title_full |
Laser texturing of soda lime glass surface for hydrophobic surface in wenzel state |
title_fullStr |
Laser texturing of soda lime glass surface for hydrophobic surface in wenzel state |
title_full_unstemmed |
Laser texturing of soda lime glass surface for hydrophobic surface in wenzel state |
title_sort |
laser texturing of soda lime glass surface for hydrophobic surface in wenzel state |
publisher |
Universiti Malaysia Pahang |
publishDate |
2024 |
url |
http://umpir.ump.edu.my/id/eprint/41329/1/Laser%20Texturing%20of%20Soda%20Lime%20Glass%20Surface%20for%20Hydrophobic%20Surface%20in%20Wenzel%20State.pdf http://umpir.ump.edu.my/id/eprint/41329/ https://doi.org/10.15282/ijame.21.1.2024.02.0848 https://doi.org/10.15282/ijame.21.1.2024.02.0848 |
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