Study of cutting force and surface roughness on drilling stainless steel 316L under various coolant condition

Drilling is the metal cutting process that are widely used in industrial sector such as in aerospace, automotive and manufacturing to produce a various of durable parts. Stainless steels in general are regarded as difficult to machine materials due to their high tendency to work harden; their toughn...

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Main Authors: Kamdani, K., Hamsah, A.A., Rafai, N.H., Rahim, M.Z., Wong, C.K., Chong, Y. L.
Format: Article
Language:English
Published: Trans Tech Publications 2018
Subjects:
Online Access:http://eprints.uthm.edu.my/4305/1/AJ%202018%20%28746%29%20Study%20of%20cutting%20force%20and%20surface%20roughness%20on%20drilling%20stainless%20steel%20316L%20under%20various%20coolant%20condition.pdf
http://eprints.uthm.edu.my/4305/
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spelling my.uthm.eprints.43052021-12-02T03:00:08Z http://eprints.uthm.edu.my/4305/ Study of cutting force and surface roughness on drilling stainless steel 316L under various coolant condition Kamdani, K. Hamsah, A.A. Rafai, N.H. Rahim, M.Z. Wong, C.K. Chong, Y. L. TJ1125-1345 Machine shops and machine shop practice TS200-770 Metal manufactures. Metalworking Drilling is the metal cutting process that are widely used in industrial sector such as in aerospace, automotive and manufacturing to produce a various of durable parts. Stainless steels in general are regarded as difficult to machine materials due to their high tendency to work harden; their toughness and relatively low thermal conductivity. In this research, the experimental setup for the effect of various parameters on drill performance in term of cutting force and surface roughness. Stainless steel 316L used as workpiece and uncoated tungsten carbide drill bit as the tool. From the experimental investigation, the results show that internal coolant with helix angle of 40 and feed rate of 0.1 mm/rev condition is the best drilling condition in term of thrust force and surface roughness. By observation on experiment, MQL coolant condition give highest thrust force while internal coolant is best condition to have most minimum force. For internal coolant, MQL and external supply, the optimum helix angle to obtain low surface roughness is 15° and 40°. Trans Tech Publications 2018 Article PeerReviewed text en http://eprints.uthm.edu.my/4305/1/AJ%202018%20%28746%29%20Study%20of%20cutting%20force%20and%20surface%20roughness%20on%20drilling%20stainless%20steel%20316L%20under%20various%20coolant%20condition.pdf Kamdani, K. and Hamsah, A.A. and Rafai, N.H. and Rahim, M.Z. and Wong, C.K. and Chong, Y. L. (2018) Study of cutting force and surface roughness on drilling stainless steel 316L under various coolant condition. Key Engineering Materials, 791. pp. 116-122. ISSN 1662-9795
institution Universiti Tun Hussein Onn Malaysia
building UTHM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tun Hussein Onn Malaysia
content_source UTHM Institutional Repository
url_provider http://eprints.uthm.edu.my/
language English
topic TJ1125-1345 Machine shops and machine shop practice
TS200-770 Metal manufactures. Metalworking
spellingShingle TJ1125-1345 Machine shops and machine shop practice
TS200-770 Metal manufactures. Metalworking
Kamdani, K.
Hamsah, A.A.
Rafai, N.H.
Rahim, M.Z.
Wong, C.K.
Chong, Y. L.
Study of cutting force and surface roughness on drilling stainless steel 316L under various coolant condition
description Drilling is the metal cutting process that are widely used in industrial sector such as in aerospace, automotive and manufacturing to produce a various of durable parts. Stainless steels in general are regarded as difficult to machine materials due to their high tendency to work harden; their toughness and relatively low thermal conductivity. In this research, the experimental setup for the effect of various parameters on drill performance in term of cutting force and surface roughness. Stainless steel 316L used as workpiece and uncoated tungsten carbide drill bit as the tool. From the experimental investigation, the results show that internal coolant with helix angle of 40 and feed rate of 0.1 mm/rev condition is the best drilling condition in term of thrust force and surface roughness. By observation on experiment, MQL coolant condition give highest thrust force while internal coolant is best condition to have most minimum force. For internal coolant, MQL and external supply, the optimum helix angle to obtain low surface roughness is 15° and 40°.
format Article
author Kamdani, K.
Hamsah, A.A.
Rafai, N.H.
Rahim, M.Z.
Wong, C.K.
Chong, Y. L.
author_facet Kamdani, K.
Hamsah, A.A.
Rafai, N.H.
Rahim, M.Z.
Wong, C.K.
Chong, Y. L.
author_sort Kamdani, K.
title Study of cutting force and surface roughness on drilling stainless steel 316L under various coolant condition
title_short Study of cutting force and surface roughness on drilling stainless steel 316L under various coolant condition
title_full Study of cutting force and surface roughness on drilling stainless steel 316L under various coolant condition
title_fullStr Study of cutting force and surface roughness on drilling stainless steel 316L under various coolant condition
title_full_unstemmed Study of cutting force and surface roughness on drilling stainless steel 316L under various coolant condition
title_sort study of cutting force and surface roughness on drilling stainless steel 316l under various coolant condition
publisher Trans Tech Publications
publishDate 2018
url http://eprints.uthm.edu.my/4305/1/AJ%202018%20%28746%29%20Study%20of%20cutting%20force%20and%20surface%20roughness%20on%20drilling%20stainless%20steel%20316L%20under%20various%20coolant%20condition.pdf
http://eprints.uthm.edu.my/4305/
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score 13.160551