The Effect of Rotational Speed, Friction Duration, and Pressure on Tensile Strength of AISI 6061 Welding Joints
Electric arc welding with covered electrodes is ideally suited for flat plates. If this technique is employed for welding rigid bodies, the results would be of poor quality. One viable solution to weld rigid bodies is through friction welding. The study aimed to investigate the tensile strength of s...
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doaj-ea2724d4e8514e31b10418a81e8b3cd22020-11-25T01:22:59ZengUniversitas Negeri MalangJournal of Mechanical Engineering Science and Technology2580-08172580-24022018-08-0121384210.17977/um016v2i12018p0382600The Effect of Rotational Speed, Friction Duration, and Pressure on Tensile Strength of AISI 6061 Welding JointsDewi Puspitasari0Poppy Puspitasari1M. Rizka Gita Firmansyah2Solichin Solichin3Mechanical Engineering Department, Faculty of Engineering, University Technology Petronas, MalaysiaDepartment of Mechanical Engineering, Faculty of Engineering, Universitas Negeri MalangCenter of Nano Research and Advanced Materials, Universitas Negeri MalangMechanical Engineering Department, Faculty of Engineering, University Technology Petronas, MalaysiaElectric arc welding with covered electrodes is ideally suited for flat plates. If this technique is employed for welding rigid bodies, the results would be of poor quality. One viable solution to weld rigid bodies is through friction welding. The study aimed to investigate the tensile strength of specimens subjected to friction welding with variations in rotational speed, friction time, and pressure and to examine the microstructure of friction welding joints. This research used the one-shot case study design and involved descriptive analysis. The descriptive analysis described the results of tensile testing and microstructure of welding joints. Results showed that the specimen subjected to a 2850 rpm rotational speed, 60-second friction duration, and 8 MPa pressure had the highest tensile strength of 15.19 Kgf, whereas that rotated at 2850 rpm under 8 MPa pressure for 80 seconds had the lowest tensile strength, i.e. 12.25 Kgf. The photomicrographs showed that the friction welding joints underwent no phase change, but the refinement of Mg2Si particles occurred in the Zpd and Zpl zones. Also, the Zud zone consisted of the same form of Mg2Si particles as the untreated specimen.http://journal2.um.ac.id/index.php/jmest/article/view/5068friction welding, tensile strength, microstructure |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Dewi Puspitasari Poppy Puspitasari M. Rizka Gita Firmansyah Solichin Solichin |
spellingShingle |
Dewi Puspitasari Poppy Puspitasari M. Rizka Gita Firmansyah Solichin Solichin The Effect of Rotational Speed, Friction Duration, and Pressure on Tensile Strength of AISI 6061 Welding Joints Journal of Mechanical Engineering Science and Technology friction welding, tensile strength, microstructure |
author_facet |
Dewi Puspitasari Poppy Puspitasari M. Rizka Gita Firmansyah Solichin Solichin |
author_sort |
Dewi Puspitasari |
title |
The Effect of Rotational Speed, Friction Duration, and Pressure on Tensile Strength of AISI 6061 Welding Joints |
title_short |
The Effect of Rotational Speed, Friction Duration, and Pressure on Tensile Strength of AISI 6061 Welding Joints |
title_full |
The Effect of Rotational Speed, Friction Duration, and Pressure on Tensile Strength of AISI 6061 Welding Joints |
title_fullStr |
The Effect of Rotational Speed, Friction Duration, and Pressure on Tensile Strength of AISI 6061 Welding Joints |
title_full_unstemmed |
The Effect of Rotational Speed, Friction Duration, and Pressure on Tensile Strength of AISI 6061 Welding Joints |
title_sort |
effect of rotational speed, friction duration, and pressure on tensile strength of aisi 6061 welding joints |
publisher |
Universitas Negeri Malang |
series |
Journal of Mechanical Engineering Science and Technology |
issn |
2580-0817 2580-2402 |
publishDate |
2018-08-01 |
description |
Electric arc welding with covered electrodes is ideally suited for flat plates. If this technique is employed for welding rigid bodies, the results would be of poor quality. One viable solution to weld rigid bodies is through friction welding. The study aimed to investigate the tensile strength of specimens subjected to friction welding with variations in rotational speed, friction time, and pressure and to examine the microstructure of friction welding joints. This research used the one-shot case study design and involved descriptive analysis. The descriptive analysis described the results of tensile testing and microstructure of welding joints. Results showed that the specimen subjected to a 2850 rpm rotational speed, 60-second friction duration, and 8 MPa pressure had the highest tensile strength of 15.19 Kgf, whereas that rotated at 2850 rpm under 8 MPa pressure for 80 seconds had the lowest tensile strength, i.e. 12.25 Kgf. The photomicrographs showed that the friction welding joints underwent no phase change, but the refinement of Mg2Si particles occurred in the Zpd and Zpl zones. Also, the Zud zone consisted of the same form of Mg2Si particles as the untreated specimen. |
topic |
friction welding, tensile strength, microstructure |
url |
http://journal2.um.ac.id/index.php/jmest/article/view/5068 |
work_keys_str_mv |
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