Mechanical Properties and Electrical Resistivity of the Friction Stir Spot-Welded Dissimilar Al–Cu Joints
Alternative methods for dissimilar metal joining particularly aluminium and copper have gain interest in manufacturing sectors. Friction stir spot welding was carried out on the AA6061 and C11000 wires of 2 mm diameter. This research paper reported the results on microstructures and mechanical prope...
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Published in | International Journal of Polymer Science Vol. 2022; pp. 1 - 7 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
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New York
Hindawi
03.06.2022
John Wiley & Sons, Inc Hindawi Limited |
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Abstract | Alternative methods for dissimilar metal joining particularly aluminium and copper have gain interest in manufacturing sectors. Friction stir spot welding was carried out on the AA6061 and C11000 wires of 2 mm diameter. This research paper reported the results on microstructures and mechanical properties of the spot-welded joints, and also special attention is provided for electrical resistivity of the welds. The microstructures reveal the information of grain structure and bonding. The width of diffusion layer significantly reduced with low dwell times. For a plunge depth of 1 mm, the maximum tensile strength (294 MPa) is achieved during the higher rotational speed (1400 rpm). For the same plunge depth, lower tensile strength values are exhibited by the joint produced using the lower rotational speed (800 rpm). Hardness of the weld region recorded 70 HV which is less than Cu (115 HV) and greater than Al (40 HV). FSSW joints (0.30 to 0.34 μΩ) offered higher range of electrical resistivity than that of base metal (0.02 μΩ). The results highlighted in this paper might be helpful for both academic researchers and industrialists. |
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AbstractList | Alternative methods for dissimilar metal joining particularly aluminium and copper have gain interest in manufacturing sectors. Friction stir spot welding was carried out on the AA6061 and C11000 wires of 2 mm diameter. This research paper reported the results on microstructures and mechanical properties of the spot-welded joints, and also special attention is provided for electrical resistivity of the welds. The microstructures reveal the information of grain structure and bonding. The width of diffusion layer significantly reduced with low dwell times. For a plunge depth of 1 mm, the maximum tensile strength (294 MPa) is achieved during the higher rotational speed (1400 rpm). For the same plunge depth, lower tensile strength values are exhibited by the joint produced using the lower rotational speed (800 rpm). Hardness of the weld region recorded 70 HV which is less than Cu (115 HV) and greater than Al (40 HV). FSSW joints (0.30 to 0.34 μΩ) offered higher range of electrical resistivity than that of base metal (0.02 μΩ). The results highlighted in this paper might be helpful for both academic researchers and industrialists. Alternative methods for dissimilar metal joining particularly aluminium and copper have gain interest in manufacturing sectors. Friction stir spot welding was carried out on the AA6061 and C11000 wires of 2mm diameter. This research paper reported the results on microstructures and mechanical properties of the spot-welded joints, and also special attention is provided for electrical resistivity of the welds. The microstructures reveal the information of grain structure and bonding. The width of diffusion layer significantly reduced with low dwell times. For a plunge depth of 1mm, the maximum tensile strength (294MPa) is achieved during the higher rotational speed (1400rpm). For the same plunge depth, lower tensile strength values are exhibited by the joint produced using the lower rotational speed (800rpm). Hardness of the weld region recorded 70HV which is less than Cu (115HV) and greater than Al (40HV). FSSW joints (0.30 to 0.34μ Ω ) offered higher range of electrical resistivity than that of base metal (0.02μ Ω ). The results highlighted in this paper might be helpful for both academic researchers and industrialists. |
Audience | Academic |
Author | Muhibbullah, M. Raja, K. Karthick, Alagar Kumar, N. Mathan Ganeshan, P. Mohanraj, N. Prathap, P. Mohanavel, V. |
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Copyright | Copyright © 2022 N. Mohanraj et al. COPYRIGHT 2022 John Wiley & Sons, Inc. Copyright © 2022 N. Mohanraj et al. This is an open access article distributed under the Creative Commons Attribution License (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. https://creativecommons.org/licenses/by/4.0 |
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SubjectTerms | Aluminum Base metal Copper Diffusion layers Dissimilar material joining Dissimilar metals Dwell time Electric properties Electrical resistivity Feasibility studies Friction stir welding Grain structure Intermetallic compounds Manufacturing industry Mechanical properties Metals Microstructure Scanning electron microscopy Scientific papers Spectrum analysis Spot welding Tensile strength Welded joints Welding |
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Title | Mechanical Properties and Electrical Resistivity of the Friction Stir Spot-Welded Dissimilar Al–Cu Joints |
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