Study of an optimal surface property of carbide cutting tool by surface modification method

This thesis introduces the effect of textures on carbide insert rake surface to the surface roughness on using laser surface texturing. Surface texturing is one of the techniques for enhancing tribological properties of mechanical components. This is also widely used which contributes a lot in numer...

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Main Authors: Razali, Mohd Nizar Mhd, Hamedon, Zamzuri B., Yusoff, A. R., Ahmad, Syarifah Nur Aqida Syed, Redza, A., Jamaludin, Ahmad Shahir
Format: Research Report
Language:English
Published: 2019
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/36346/1/Study%20of%20an%20optimal%20surface%20property%20of%20carbide%20cutting%20tool%20by%20surface%20modification%20method.wm.pdf
http://umpir.ump.edu.my/id/eprint/36346/
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spelling my.ump.umpir.363462023-02-17T07:53:09Z http://umpir.ump.edu.my/id/eprint/36346/ Study of an optimal surface property of carbide cutting tool by surface modification method Razali, Mohd Nizar Mhd Hamedon, Zamzuri B. Yusoff, A. R. Ahmad, Syarifah Nur Aqida Syed Redza, A. Jamaludin, Ahmad Shahir TS Manufactures This thesis introduces the effect of textures on carbide insert rake surface to the surface roughness on using laser surface texturing. Surface texturing is one of the techniques for enhancing tribological properties of mechanical components. This is also widely used which contributes a lot in numerous engineering applications. Various parameters of pattern have been used to improve tribological performance. Parallel grooves has been used because able to trap wear debris, change stress distribution and low surface roughness. The fabrication of textures on carbide insert surface is one of the predominant methods to enhance the sustainability of laser process with cemented carbide insert. Laser process was utilized using CK-FB3D 3-Axis Control fiber laser marker to fabricate textures that were effective use to cut the tool. Olympus BX51M metallurgical microscope was using to check condition of the rake surface carbide insert. After that, depth of cut of the laser on the carbide insert was investigate using video measuring system. Furthermore, the surface roughness was utilized using surface roughness tester. Carbide insert has been tested using four parameters and found that relatively low scanning speed and frequency resulted in less surface roughness for textured carbide insert. Low surface roughness was discovered because high hardness of the carbide insert would make the less friction when cutting the tool. 2019 Research Report NonPeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/36346/1/Study%20of%20an%20optimal%20surface%20property%20of%20carbide%20cutting%20tool%20by%20surface%20modification%20method.wm.pdf Razali, Mohd Nizar Mhd and Hamedon, Zamzuri B. and Yusoff, A. R. and Ahmad, Syarifah Nur Aqida Syed and Redza, A. and Jamaludin, Ahmad Shahir (2019) Study of an optimal surface property of carbide cutting tool by surface modification method. , [Research Report: Research Report] (Unpublished)
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
topic TS Manufactures
spellingShingle TS Manufactures
Razali, Mohd Nizar Mhd
Hamedon, Zamzuri B.
Yusoff, A. R.
Ahmad, Syarifah Nur Aqida Syed
Redza, A.
Jamaludin, Ahmad Shahir
Study of an optimal surface property of carbide cutting tool by surface modification method
description This thesis introduces the effect of textures on carbide insert rake surface to the surface roughness on using laser surface texturing. Surface texturing is one of the techniques for enhancing tribological properties of mechanical components. This is also widely used which contributes a lot in numerous engineering applications. Various parameters of pattern have been used to improve tribological performance. Parallel grooves has been used because able to trap wear debris, change stress distribution and low surface roughness. The fabrication of textures on carbide insert surface is one of the predominant methods to enhance the sustainability of laser process with cemented carbide insert. Laser process was utilized using CK-FB3D 3-Axis Control fiber laser marker to fabricate textures that were effective use to cut the tool. Olympus BX51M metallurgical microscope was using to check condition of the rake surface carbide insert. After that, depth of cut of the laser on the carbide insert was investigate using video measuring system. Furthermore, the surface roughness was utilized using surface roughness tester. Carbide insert has been tested using four parameters and found that relatively low scanning speed and frequency resulted in less surface roughness for textured carbide insert. Low surface roughness was discovered because high hardness of the carbide insert would make the less friction when cutting the tool.
format Research Report
author Razali, Mohd Nizar Mhd
Hamedon, Zamzuri B.
Yusoff, A. R.
Ahmad, Syarifah Nur Aqida Syed
Redza, A.
Jamaludin, Ahmad Shahir
author_facet Razali, Mohd Nizar Mhd
Hamedon, Zamzuri B.
Yusoff, A. R.
Ahmad, Syarifah Nur Aqida Syed
Redza, A.
Jamaludin, Ahmad Shahir
author_sort Razali, Mohd Nizar Mhd
title Study of an optimal surface property of carbide cutting tool by surface modification method
title_short Study of an optimal surface property of carbide cutting tool by surface modification method
title_full Study of an optimal surface property of carbide cutting tool by surface modification method
title_fullStr Study of an optimal surface property of carbide cutting tool by surface modification method
title_full_unstemmed Study of an optimal surface property of carbide cutting tool by surface modification method
title_sort study of an optimal surface property of carbide cutting tool by surface modification method
publishDate 2019
url http://umpir.ump.edu.my/id/eprint/36346/1/Study%20of%20an%20optimal%20surface%20property%20of%20carbide%20cutting%20tool%20by%20surface%20modification%20method.wm.pdf
http://umpir.ump.edu.my/id/eprint/36346/
_version_ 1758578240776044544
score 13.211869