Compressive behaviour and energy absorption of copper tube under quasi-static and ultrasonic compression test

The application of ultrasonic vibration in metal forming has significantly reduced the forming force. This force reduction can be explained by the softening effect of material and the reduction of friction between the interfaces. However, studies on metal forming focused on the deformation of bulk m...

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Main Authors: Muhalim, N. A. D. B., Daud, M. Y. B. M., Hassan, M. Z .B., Aziz, S. B. A., Raman, N. B. A., Sarip, S. B.
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Published: UiTM Press 2017
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Online Access:http://eprints.utm.my/id/eprint/76486/
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spelling my.utm.764862018-04-30T13:27:47Z http://eprints.utm.my/id/eprint/76486/ Compressive behaviour and energy absorption of copper tube under quasi-static and ultrasonic compression test Muhalim, N. A. D. B. Daud, M. Y. B. M. Hassan, M. Z .B. Aziz, S. B. A. Raman, N. B. A. Sarip, S. B. T Technology (General) The application of ultrasonic vibration in metal forming has significantly reduced the forming force. This force reduction can be explained by the softening effect of material and the reduction of friction between the interfaces. However, studies on metal forming focused on the deformation of bulk metal, but specific study focusing on the application of ultrasonic vibration on tube forming is very limited. Therefore, the present study aims to investigate the compressive behavior and energy absorption of a copper tube under quasi-static and ultrasonic compression. This investigation was carried out for copper tube specimens on a simple compression test set-up using a constant cross head speed of 30 mm/min on dry surface condition. For the quasi-static compression test, specimens were statically compressed without ultrasonic vibration between an upper and lower rigid platen. For the ultrasonic compression test, specimens were compressed with ultrasonic vibration between upper rigid platen and ultrasonic horn. A specifically designed ultrasonic horn was fabricated prior to the test as a medium to transmit the ultrasonic vibration to the specimens. The horn was tuned to a longitudinal mode at 19.89 kHz frequency with a uniform nominal vibration peak amplitude of 6 μm on the horn surface. Load-displacement distributions for quasi-static and ultrasonic compression tests were analysed. A comparison of quasi-static and ultrasonic compression test results has been made. It was found that the compressive stress was remarkably reduced with the onset of superimposed ultrasonic vibration during plastic deformation and has lowered the energy absorption of the specimens. In addition, better deformation profiles of end products were obtained by the increase of compressibility and formability of the specimens as compared to quasi-static compression. UiTM Press 2017 Article PeerReviewed Muhalim, N. A. D. B. and Daud, M. Y. B. M. and Hassan, M. Z .B. and Aziz, S. B. A. and Raman, N. B. A. and Sarip, S. B. (2017) Compressive behaviour and energy absorption of copper tube under quasi-static and ultrasonic compression test. Journal of Mechanical Engineering, SI 3 (1). pp. 169-184. ISSN 1823-5514 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85041074778&partnerID=40&md5=aa6c52a12b6c87dcb90818ad9b3d98cc
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic T Technology (General)
spellingShingle T Technology (General)
Muhalim, N. A. D. B.
Daud, M. Y. B. M.
Hassan, M. Z .B.
Aziz, S. B. A.
Raman, N. B. A.
Sarip, S. B.
Compressive behaviour and energy absorption of copper tube under quasi-static and ultrasonic compression test
description The application of ultrasonic vibration in metal forming has significantly reduced the forming force. This force reduction can be explained by the softening effect of material and the reduction of friction between the interfaces. However, studies on metal forming focused on the deformation of bulk metal, but specific study focusing on the application of ultrasonic vibration on tube forming is very limited. Therefore, the present study aims to investigate the compressive behavior and energy absorption of a copper tube under quasi-static and ultrasonic compression. This investigation was carried out for copper tube specimens on a simple compression test set-up using a constant cross head speed of 30 mm/min on dry surface condition. For the quasi-static compression test, specimens were statically compressed without ultrasonic vibration between an upper and lower rigid platen. For the ultrasonic compression test, specimens were compressed with ultrasonic vibration between upper rigid platen and ultrasonic horn. A specifically designed ultrasonic horn was fabricated prior to the test as a medium to transmit the ultrasonic vibration to the specimens. The horn was tuned to a longitudinal mode at 19.89 kHz frequency with a uniform nominal vibration peak amplitude of 6 μm on the horn surface. Load-displacement distributions for quasi-static and ultrasonic compression tests were analysed. A comparison of quasi-static and ultrasonic compression test results has been made. It was found that the compressive stress was remarkably reduced with the onset of superimposed ultrasonic vibration during plastic deformation and has lowered the energy absorption of the specimens. In addition, better deformation profiles of end products were obtained by the increase of compressibility and formability of the specimens as compared to quasi-static compression.
format Article
author Muhalim, N. A. D. B.
Daud, M. Y. B. M.
Hassan, M. Z .B.
Aziz, S. B. A.
Raman, N. B. A.
Sarip, S. B.
author_facet Muhalim, N. A. D. B.
Daud, M. Y. B. M.
Hassan, M. Z .B.
Aziz, S. B. A.
Raman, N. B. A.
Sarip, S. B.
author_sort Muhalim, N. A. D. B.
title Compressive behaviour and energy absorption of copper tube under quasi-static and ultrasonic compression test
title_short Compressive behaviour and energy absorption of copper tube under quasi-static and ultrasonic compression test
title_full Compressive behaviour and energy absorption of copper tube under quasi-static and ultrasonic compression test
title_fullStr Compressive behaviour and energy absorption of copper tube under quasi-static and ultrasonic compression test
title_full_unstemmed Compressive behaviour and energy absorption of copper tube under quasi-static and ultrasonic compression test
title_sort compressive behaviour and energy absorption of copper tube under quasi-static and ultrasonic compression test
publisher UiTM Press
publishDate 2017
url http://eprints.utm.my/id/eprint/76486/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85041074778&partnerID=40&md5=aa6c52a12b6c87dcb90818ad9b3d98cc
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score 13.18916