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Laser Hybrid Butt Welding of Large Thickness Naval Steel
by
Churiaque Bermejo, Cristina
, Porrua-Lara, Manuel
, Ciencia de los Materiales e Ingeniería Metalúrgica y Química Inorgánica
, Domínguez Abecia, Antonio
, Chludzinski, Mariane
, Sánchez Amaya, José María
, Abad Fraga, Francisco Javier
in
Arc welding
/ Beads
/ Butt welding
/ Classification
/ Flat panels
/ Hybridization
/ Laser beam welding
/ laser hybrid welding
/ laser welding
/ Lasers
/ Material properties
/ Mechanical properties
/ Metallurgical analysis
/ naval steel
/ Navy
/ Penetration
/ Process variables
/ Quality assurance
/ Quality standards
/ R&D
/ Research & development
/ Shipbuilding
/ Steel
/ Steel plates
/ thick plate
/ Thickness
/ Welded joints
2019
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Laser Hybrid Butt Welding of Large Thickness Naval Steel
by
Churiaque Bermejo, Cristina
, Porrua-Lara, Manuel
, Ciencia de los Materiales e Ingeniería Metalúrgica y Química Inorgánica
, Domínguez Abecia, Antonio
, Chludzinski, Mariane
, Sánchez Amaya, José María
, Abad Fraga, Francisco Javier
in
Arc welding
/ Beads
/ Butt welding
/ Classification
/ Flat panels
/ Hybridization
/ Laser beam welding
/ laser hybrid welding
/ laser welding
/ Lasers
/ Material properties
/ Mechanical properties
/ Metallurgical analysis
/ naval steel
/ Navy
/ Penetration
/ Process variables
/ Quality assurance
/ Quality standards
/ R&D
/ Research & development
/ Shipbuilding
/ Steel
/ Steel plates
/ thick plate
/ Thickness
/ Welded joints
2019
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Laser Hybrid Butt Welding of Large Thickness Naval Steel
by
Churiaque Bermejo, Cristina
, Porrua-Lara, Manuel
, Ciencia de los Materiales e Ingeniería Metalúrgica y Química Inorgánica
, Domínguez Abecia, Antonio
, Chludzinski, Mariane
, Sánchez Amaya, José María
, Abad Fraga, Francisco Javier
in
Arc welding
/ Beads
/ Butt welding
/ Classification
/ Flat panels
/ Hybridization
/ Laser beam welding
/ laser hybrid welding
/ laser welding
/ Lasers
/ Material properties
/ Mechanical properties
/ Metallurgical analysis
/ naval steel
/ Navy
/ Penetration
/ Process variables
/ Quality assurance
/ Quality standards
/ R&D
/ Research & development
/ Shipbuilding
/ Steel
/ Steel plates
/ thick plate
/ Thickness
/ Welded joints
2019
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Journal Article
Laser Hybrid Butt Welding of Large Thickness Naval Steel
2019
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Overview
Plates joining is one of the first stage at large vessels manufacturing line, process conditioning the whole shipbuilding production. Laser Arc Hybrid Welding (LAHW) process is nowadays providing promising results for large thickness naval steel, being primarily used for welding plates with thicknesses between 6 to 15 mm, reaching up to 51 mm. In addition to this high penetration ability, LAHW allows increasing the production rates. Therefore, this technology is proposed as an alternative to conventional welding processes in shipbuilding, as it integrates the advantages of laser and arc welding, providing high process stability, high welding speed and penetration, narrow weld beads with a low heat input and good metallurgical properties. The present review reports the most representative investigation regarding the use of this technology to join large thickness flat panels of naval steel. It includes a summary of the most influential process variables, equipment characteristics, material properties, naval regulations, as well as microstructural characterisation and mechanical properties of joints. This review is thought to help readers from different backgrounds, covering from non-expert on welding or on naval sector, to industrial LAHW applicators and researchers. The industrial need of performing one single pass procedure to assure high quality welds of high thickness is suggested as one of the key aspects for future investigations.
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