4.5 Article

Research and progress in laser welding of wrought aluminum alloys. I. Laser welding processes

Journal

MATERIALS AND MANUFACTURING PROCESSES
Volume 18, Issue 1, Pages 1-22

Publisher

MARCEL DEKKER INC
DOI: 10.1081/AMP-120017586

Keywords

review; laser welding; laser beam welding; aluminum alloys; wrought aluminum alloys; CO2 laser; Nd : YAG laser; keyhole mode; deep penetration mode; process parameters; weld quality

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With the wide application of Al alloys in automotive, aerospace and other industries, laser welding has become a critical joining technique for aluminum alloys. In this review, the research and progress in laser welding of wrought Al alloys have been critically discussed from different perspectives. The primary objective of this review is to understand the influence of welding processes on joint quality and to build up the science base of laser welding for the reliable production of Al alloy joints. Two main types of industrial lasers, carbon dioxide (CO2) and neodymium-doped yttrium aluminum garnet (Nd:YAG), are currently applied but special attention is paid to Nd:YAG laser welding of 5000 and 6000 series alloys in the keyhole (deep penetration) mode. In this part of the review, the main laser welding processing parameters including the laser-, process-, and material-related variables and their effects on weld quality are examined. In part II of this article in this journal, the metallurgical microstructures and main defects encountered in laser welding of Al alloys such as porosity, cracking, oxide inclusions, and loss of alloying elements are discussed from the point of view of mechanism of their formation, main influencing factors, and remedy measures. In part II, the main mechanical properties such as hardness, tensile, and fatigue strength and formability are also discussed.

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