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The Effect of Welding Current and Electrode Force on the Heat Input, Weld Diameter, and Physical and Mechanical Properties of SS316L/Ti(6)Al(4)V Dissimilar Resistance Spot Welding with Aluminum Interlayer

Welding parameters obviously determine the joint quality during the resistance spot welding process. This study aimed to investigate the effect of welding current and electrode force on the heat input and the physical and mechanical properties of a SS316L and Ti(6)Al(4)V joint with an aluminum inter...

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Autores principales: Taufiqurrahman, Iqbal, Ahmad, Azlan, Mustapha, Mazli, Lenggo Ginta, Turnad, Ady Farizan Haryoko, Luthfi, Ahmed Shozib, Imtiaz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7957577/
https://www.ncbi.nlm.nih.gov/pubmed/33673716
http://dx.doi.org/10.3390/ma14051129
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author Taufiqurrahman, Iqbal
Ahmad, Azlan
Mustapha, Mazli
Lenggo Ginta, Turnad
Ady Farizan Haryoko, Luthfi
Ahmed Shozib, Imtiaz
author_facet Taufiqurrahman, Iqbal
Ahmad, Azlan
Mustapha, Mazli
Lenggo Ginta, Turnad
Ady Farizan Haryoko, Luthfi
Ahmed Shozib, Imtiaz
author_sort Taufiqurrahman, Iqbal
collection PubMed
description Welding parameters obviously determine the joint quality during the resistance spot welding process. This study aimed to investigate the effect of welding current and electrode force on the heat input and the physical and mechanical properties of a SS316L and Ti(6)Al(4)V joint with an aluminum interlayer. The weld current values used in this study were 11, 12, and 13 kA, while the electrode force values were 3, 4, and 5 kN. Welding time and holding time remained constant at 30 cycles. The study revealed that, as the welding current and electrode force increased, the generated heat input increased significantly. The highest tensile-shear load was recorded at 8.71 kN using 11 kA of weld current and 3 kN of electrode force. The physical properties examined the formation of a brittle fracture and several weld defects on the high current welded joint. The increase in weld current also increased the weld diameter. The microstructure analysis revealed no phase transformation on the SS316L interface; instead, the significant grain growth occurred. The phase transformation has occurred on the Ti(6)Al(4)V interface. The intermetallic compound layer was also investigated in detail using the EDX (Energy Dispersive X-Ray) and XRD (X-Ray Diffraction) analyses. It was also found that both stainless steel and titanium alloy have their own fusion zone, which is indicated by the highest microhardness value.
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spelling pubmed-79575772021-03-16 The Effect of Welding Current and Electrode Force on the Heat Input, Weld Diameter, and Physical and Mechanical Properties of SS316L/Ti(6)Al(4)V Dissimilar Resistance Spot Welding with Aluminum Interlayer Taufiqurrahman, Iqbal Ahmad, Azlan Mustapha, Mazli Lenggo Ginta, Turnad Ady Farizan Haryoko, Luthfi Ahmed Shozib, Imtiaz Materials (Basel) Article Welding parameters obviously determine the joint quality during the resistance spot welding process. This study aimed to investigate the effect of welding current and electrode force on the heat input and the physical and mechanical properties of a SS316L and Ti(6)Al(4)V joint with an aluminum interlayer. The weld current values used in this study were 11, 12, and 13 kA, while the electrode force values were 3, 4, and 5 kN. Welding time and holding time remained constant at 30 cycles. The study revealed that, as the welding current and electrode force increased, the generated heat input increased significantly. The highest tensile-shear load was recorded at 8.71 kN using 11 kA of weld current and 3 kN of electrode force. The physical properties examined the formation of a brittle fracture and several weld defects on the high current welded joint. The increase in weld current also increased the weld diameter. The microstructure analysis revealed no phase transformation on the SS316L interface; instead, the significant grain growth occurred. The phase transformation has occurred on the Ti(6)Al(4)V interface. The intermetallic compound layer was also investigated in detail using the EDX (Energy Dispersive X-Ray) and XRD (X-Ray Diffraction) analyses. It was also found that both stainless steel and titanium alloy have their own fusion zone, which is indicated by the highest microhardness value. MDPI 2021-02-27 /pmc/articles/PMC7957577/ /pubmed/33673716 http://dx.doi.org/10.3390/ma14051129 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Taufiqurrahman, Iqbal
Ahmad, Azlan
Mustapha, Mazli
Lenggo Ginta, Turnad
Ady Farizan Haryoko, Luthfi
Ahmed Shozib, Imtiaz
The Effect of Welding Current and Electrode Force on the Heat Input, Weld Diameter, and Physical and Mechanical Properties of SS316L/Ti(6)Al(4)V Dissimilar Resistance Spot Welding with Aluminum Interlayer
title The Effect of Welding Current and Electrode Force on the Heat Input, Weld Diameter, and Physical and Mechanical Properties of SS316L/Ti(6)Al(4)V Dissimilar Resistance Spot Welding with Aluminum Interlayer
title_full The Effect of Welding Current and Electrode Force on the Heat Input, Weld Diameter, and Physical and Mechanical Properties of SS316L/Ti(6)Al(4)V Dissimilar Resistance Spot Welding with Aluminum Interlayer
title_fullStr The Effect of Welding Current and Electrode Force on the Heat Input, Weld Diameter, and Physical and Mechanical Properties of SS316L/Ti(6)Al(4)V Dissimilar Resistance Spot Welding with Aluminum Interlayer
title_full_unstemmed The Effect of Welding Current and Electrode Force on the Heat Input, Weld Diameter, and Physical and Mechanical Properties of SS316L/Ti(6)Al(4)V Dissimilar Resistance Spot Welding with Aluminum Interlayer
title_short The Effect of Welding Current and Electrode Force on the Heat Input, Weld Diameter, and Physical and Mechanical Properties of SS316L/Ti(6)Al(4)V Dissimilar Resistance Spot Welding with Aluminum Interlayer
title_sort effect of welding current and electrode force on the heat input, weld diameter, and physical and mechanical properties of ss316l/ti(6)al(4)v dissimilar resistance spot welding with aluminum interlayer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7957577/
https://www.ncbi.nlm.nih.gov/pubmed/33673716
http://dx.doi.org/10.3390/ma14051129
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