Effect of drill point angle on surface integrity when drilling titanium alloy

Surface integrity of machined component is of major importance for the reliability and safety requirements during in service especially for the aerospace applications. This paper presents an investigation on the effect of drill geometry on the surface integrity of drilled hole of Ti-6AL-4V during dr...

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Main Authors: Murad, Muhamad Nasir, Sharif, S., Rahim, E. A., Riva, R.
Format: Article
Language:English
Published: Trans Tech Publications 2014
Subjects:
Online Access:http://eprints.uthm.edu.my/5489/1/AJ%202018%20%28201%29.pdf
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author Murad, Muhamad Nasir
Sharif, S.
Rahim, E. A.
Riva, R.
author_facet Murad, Muhamad Nasir
Sharif, S.
Rahim, E. A.
Riva, R.
author_sort Murad, Muhamad Nasir
collection UTHM
description Surface integrity of machined component is of major importance for the reliability and safety requirements during in service especially for the aerospace applications. This paper presents an investigation on the effect of drill geometry on the surface integrity of drilled hole of Ti-6AL-4V during drilling operation. Drilling experiments were conducted under the MQL using a special vegetable oil known as Jatropha oil. Experimental results revealed that drill point angle and coolantlubricant conditions significantly influence the surface integrity which include surface roughness, micorhardness and microstructure defects. The surface roughness decreased with greater drill point angle. The subsurface deformation layer thickness was approximately 9 - 15 µm from the top of the machined surface. Microhardness profiles of the last hole indicated that the subsurface deformation extend up to a 150 to 200 µm until it reaches to the average hardness.
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spelling uthm.eprints-54892022-01-10T01:38:23Z http://eprints.uthm.edu.my/5489/ Effect of drill point angle on surface integrity when drilling titanium alloy Murad, Muhamad Nasir Sharif, S. Rahim, E. A. Riva, R. TJ Mechanical engineering and machinery Surface integrity of machined component is of major importance for the reliability and safety requirements during in service especially for the aerospace applications. This paper presents an investigation on the effect of drill geometry on the surface integrity of drilled hole of Ti-6AL-4V during drilling operation. Drilling experiments were conducted under the MQL using a special vegetable oil known as Jatropha oil. Experimental results revealed that drill point angle and coolantlubricant conditions significantly influence the surface integrity which include surface roughness, micorhardness and microstructure defects. The surface roughness decreased with greater drill point angle. The subsurface deformation layer thickness was approximately 9 - 15 µm from the top of the machined surface. Microhardness profiles of the last hole indicated that the subsurface deformation extend up to a 150 to 200 µm until it reaches to the average hardness. Trans Tech Publications 2014 Article PeerReviewed text en http://eprints.uthm.edu.my/5489/1/AJ%202018%20%28201%29.pdf Murad, Muhamad Nasir and Sharif, S. and Rahim, E. A. and Riva, R. (2014) Effect of drill point angle on surface integrity when drilling titanium alloy. Advanced Materials Research, 845. pp. 966-970. ISSN 1022-6680
spellingShingle TJ Mechanical engineering and machinery
Murad, Muhamad Nasir
Sharif, S.
Rahim, E. A.
Riva, R.
Effect of drill point angle on surface integrity when drilling titanium alloy
title Effect of drill point angle on surface integrity when drilling titanium alloy
title_full Effect of drill point angle on surface integrity when drilling titanium alloy
title_fullStr Effect of drill point angle on surface integrity when drilling titanium alloy
title_full_unstemmed Effect of drill point angle on surface integrity when drilling titanium alloy
title_short Effect of drill point angle on surface integrity when drilling titanium alloy
title_sort effect of drill point angle on surface integrity when drilling titanium alloy
topic TJ Mechanical engineering and machinery
url http://eprints.uthm.edu.my/5489/1/AJ%202018%20%28201%29.pdf
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