Laser Beam and Laser-Arc Hybrid Welding of Aluminium Alloys

被引:62
作者
Bunaziv, Ivan [1 ]
Akselsen, Odd M. [1 ]
Ren, Xiaobo [1 ]
Nyhus, Bard [1 ]
Eriksson, Magnus [1 ]
机构
[1] SINTEF Ind, POB 4760 Torgarden, NO-7465 Trondheim, Norway
关键词
aluminium alloys; laser welding; laser-arc hybrid welding; keyhole; cracking; porosity; metallurgy; mechanical properties; ND-YAG LASER; SOLIDIFICATION CRACKING SUSCEPTIBILITY; HEAT-AFFECTED ZONES; AL-CU-LI; MECHANICAL-PROPERTIES; GRAIN-REFINEMENT; NUMERICAL-SIMULATION; SHIELDING GAS; POOL DYNAMICS; MOLTEN POOL;
D O I
10.3390/met11081150
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Aluminium alloys are widely used in many industries due to their high strength-to-weight ratios and resistance to corrosion. Due to their specific thermophysical properties and intricate physical metallurgy, these alloys are challenging to weld. Work-hardened alloys may experience strength loss in heat-affected zones (HAZ). The strength of precipitation-hardened alloys is severely damaged in both HAZ and weld metal due to coarsening or full dissolution. The high thermal conductivity and reflectivity of aluminium causes lower laser beam absorptivity with lower processing efficiency. Weld imperfections such as porosity, humping, and underfills are frequently formed due to the low melting point and density promoting high liquidity with low surface tension. Porosity is the most persistent imperfection and is detrimental for mechanical properties. In this work, extensive review was made on laser beam and laser-arc hybrid welding of aluminium alloys. Solidification cracking, evaporation of alloying elements, porosity and keyhole stability, and other challenges are studied in detail. The current development of laser welding of aluminium alloys is not so mature and new discoveries will be made in the future including the use of newly developed laser systems, welding consumables, welding methods, and approaches.
引用
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页数:59
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