Effect of Torch Weaving on the Microstructure, Tensile and Impact Resistances, and Fracture of the HAZ and Weld Bead by Robotic GMAW Process on ASTM A36 Steel
Abstract The effect of torch weaving on the microstructure, tensile strength, impact resistance and fracturing in robotic welded joints using varing welding speeds, voltages and currents was evaluated through fractography using scanning electron microscopy, tension, impact and micro-hardness tests a...
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Associação Brasileira de Soldagem
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doaj-b06a2e746f0041e5bba59ed755697c532020-11-24T22:27:12ZengAssociação Brasileira de SoldagemSoldagem & Inspeção1980-6973221728610.1590/0104-9224/si2201.08S0104-92242017000100072Effect of Torch Weaving on the Microstructure, Tensile and Impact Resistances, and Fracture of the HAZ and Weld Bead by Robotic GMAW Process on ASTM A36 SteelIsidro Guzman-FloresBenjamin Vargas-AristaJuan Jose Gasca-DominguezCelso Eduardo Cruz-GonzalezMarco Antonio González-AlbarránJoaquin del Prado-VillasanaAbstract The effect of torch weaving on the microstructure, tensile strength, impact resistance and fracturing in robotic welded joints using varing welding speeds, voltages and currents was evaluated through fractography using scanning electron microscopy, tension, impact and micro-hardness tests and optic microscopy. Results indicated that linear, sinusoidal and circular weavings favored an increase of the width of the HAZ as well as a slight increase in yield resistance accompanied by hardening in comparison with a triangular weave. The latter favored larger impact energy in the HAZ with less width, containing coarse-grained ferrite due to lower tensile strength and Vickers hardness. A circular weave generated the highest level of hardening and the lowest energy absorbed in the HAZ as a consequence of an increase in yield strength related to the fine needles of acicular ferrite. A linear weave favored the greatest width of the HAZ compared with other weld weavings due to heat accumulation along the fusion line of the welded joint. Hardening and loss of toughness were evaluated through fractographic analysis showing mixed fractures mainly composed of brittle fracturing made by transgranular cleavages with facets containing well defined river patterns.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-92242017000100072&lng=en&tlng=enZACFratura por clivagemSoldagem robotizadaMovimento de tochaAço ASTM A36 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Isidro Guzman-Flores Benjamin Vargas-Arista Juan Jose Gasca-Dominguez Celso Eduardo Cruz-Gonzalez Marco Antonio González-Albarrán Joaquin del Prado-Villasana |
spellingShingle |
Isidro Guzman-Flores Benjamin Vargas-Arista Juan Jose Gasca-Dominguez Celso Eduardo Cruz-Gonzalez Marco Antonio González-Albarrán Joaquin del Prado-Villasana Effect of Torch Weaving on the Microstructure, Tensile and Impact Resistances, and Fracture of the HAZ and Weld Bead by Robotic GMAW Process on ASTM A36 Steel Soldagem & Inspeção ZAC Fratura por clivagem Soldagem robotizada Movimento de tocha Aço ASTM A36 |
author_facet |
Isidro Guzman-Flores Benjamin Vargas-Arista Juan Jose Gasca-Dominguez Celso Eduardo Cruz-Gonzalez Marco Antonio González-Albarrán Joaquin del Prado-Villasana |
author_sort |
Isidro Guzman-Flores |
title |
Effect of Torch Weaving on the Microstructure, Tensile and Impact Resistances, and Fracture of the HAZ and Weld Bead by Robotic GMAW Process on ASTM A36 Steel |
title_short |
Effect of Torch Weaving on the Microstructure, Tensile and Impact Resistances, and Fracture of the HAZ and Weld Bead by Robotic GMAW Process on ASTM A36 Steel |
title_full |
Effect of Torch Weaving on the Microstructure, Tensile and Impact Resistances, and Fracture of the HAZ and Weld Bead by Robotic GMAW Process on ASTM A36 Steel |
title_fullStr |
Effect of Torch Weaving on the Microstructure, Tensile and Impact Resistances, and Fracture of the HAZ and Weld Bead by Robotic GMAW Process on ASTM A36 Steel |
title_full_unstemmed |
Effect of Torch Weaving on the Microstructure, Tensile and Impact Resistances, and Fracture of the HAZ and Weld Bead by Robotic GMAW Process on ASTM A36 Steel |
title_sort |
effect of torch weaving on the microstructure, tensile and impact resistances, and fracture of the haz and weld bead by robotic gmaw process on astm a36 steel |
publisher |
Associação Brasileira de Soldagem |
series |
Soldagem & Inspeção |
issn |
1980-6973 |
description |
Abstract The effect of torch weaving on the microstructure, tensile strength, impact resistance and fracturing in robotic welded joints using varing welding speeds, voltages and currents was evaluated through fractography using scanning electron microscopy, tension, impact and micro-hardness tests and optic microscopy. Results indicated that linear, sinusoidal and circular weavings favored an increase of the width of the HAZ as well as a slight increase in yield resistance accompanied by hardening in comparison with a triangular weave. The latter favored larger impact energy in the HAZ with less width, containing coarse-grained ferrite due to lower tensile strength and Vickers hardness. A circular weave generated the highest level of hardening and the lowest energy absorbed in the HAZ as a consequence of an increase in yield strength related to the fine needles of acicular ferrite. A linear weave favored the greatest width of the HAZ compared with other weld weavings due to heat accumulation along the fusion line of the welded joint. Hardening and loss of toughness were evaluated through fractographic analysis showing mixed fractures mainly composed of brittle fracturing made by transgranular cleavages with facets containing well defined river patterns. |
topic |
ZAC Fratura por clivagem Soldagem robotizada Movimento de tocha Aço ASTM A36 |
url |
http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-92242017000100072&lng=en&tlng=en |
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