Development of Turret Punch Cutting Tool Using Reverse Engineering Method

This paper presents the reverse engineering technique to develop turret punch cutting tool for Trumatic TC2020R FMC machine. Different shear angle being tested to investigate the cutting process and tool wear. Result shows that 12o cutting tool has the highest tools life with p...

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Main Authors: M. M., Noor, R., Daud, K., Kadirgama, M. R. M., Rejab, N. M. Zuki, N. M.
Format: Conference or Workshop Item
Language:English
Published: 2008
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/1335/1/Development_of_Turret_Punch_Cutting_Tool_Using_Reverse_Engineering_Method.pdf
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author M. M., Noor
R., Daud
K., Kadirgama
M. R. M., Rejab
N. M. Zuki, N. M.
author_facet M. M., Noor
R., Daud
K., Kadirgama
M. R. M., Rejab
N. M. Zuki, N. M.
author_sort M. M., Noor
collection UMP
description This paper presents the reverse engineering technique to develop turret punch cutting tool for Trumatic TC2020R FMC machine. Different shear angle being tested to investigate the cutting process and tool wear. Result shows that 12o cutting tool has the highest tools life with poor performance. Cutting tool with 4.5o to 6.5o shear angle obtains lower tool life and better performance compare with 12o shear angle. By increasing the shearing angle, it will reduce the stress on the tool.
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format Conference or Workshop Item
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language English
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spelling UMPir13352018-01-09T03:01:32Z http://umpir.ump.edu.my/id/eprint/1335/ Development of Turret Punch Cutting Tool Using Reverse Engineering Method M. M., Noor R., Daud K., Kadirgama M. R. M., Rejab N. M. Zuki, N. M. TJ Mechanical engineering and machinery This paper presents the reverse engineering technique to develop turret punch cutting tool for Trumatic TC2020R FMC machine. Different shear angle being tested to investigate the cutting process and tool wear. Result shows that 12o cutting tool has the highest tools life with poor performance. Cutting tool with 4.5o to 6.5o shear angle obtains lower tool life and better performance compare with 12o shear angle. By increasing the shearing angle, it will reduce the stress on the tool. 2008 Conference or Workshop Item PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/1335/1/Development_of_Turret_Punch_Cutting_Tool_Using_Reverse_Engineering_Method.pdf M. M., Noor and R., Daud and K., Kadirgama and M. R. M., Rejab and N. M. Zuki, N. M. (2008) Development of Turret Punch Cutting Tool Using Reverse Engineering Method. In: National Conference on Design and Concurrent Engineering (DECON 2008) , 28-29 Oktober 2008 , Melaka, Malaysia. . (Unpublished) (Unpublished)
spellingShingle TJ Mechanical engineering and machinery
M. M., Noor
R., Daud
K., Kadirgama
M. R. M., Rejab
N. M. Zuki, N. M.
Development of Turret Punch Cutting Tool Using Reverse Engineering Method
title Development of Turret Punch Cutting Tool Using Reverse Engineering Method
title_full Development of Turret Punch Cutting Tool Using Reverse Engineering Method
title_fullStr Development of Turret Punch Cutting Tool Using Reverse Engineering Method
title_full_unstemmed Development of Turret Punch Cutting Tool Using Reverse Engineering Method
title_short Development of Turret Punch Cutting Tool Using Reverse Engineering Method
title_sort development of turret punch cutting tool using reverse engineering method
topic TJ Mechanical engineering and machinery
url http://umpir.ump.edu.my/id/eprint/1335/1/Development_of_Turret_Punch_Cutting_Tool_Using_Reverse_Engineering_Method.pdf
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