研究目的
Investigating the effects of laser offsets on the weld shape, interface microstructures, and ultimate tensile strength (UTS) of steel/Al butt joints using hybrid laser-metal inert gas (MIG) keyhole welding.
研究成果
Sound 6 mm thick steel/Al butt joints were obtained using hybrid laser-MIG keyhole welding. The laser offsets influenced the weld widths but had little effect on the reinforcement height. The middle part of the Al/weld interface exhibited relatively thin and uniform IMC layers. The maximum UTS of 87.0 MPa was achieved at a laser offset of 0.6 mm. The fracture morphology and locations were a mixed failure, providing resistance to crack propagation.
研究不足
The study focuses on the effects of laser offsets on the properties of steel/Al butt joints but does not explore other potential variables that could influence the welding process and joint properties.
1:Experimental Design and Method Selection:
Hybrid laser-MIG keyhole welding was used to join 6 mm thick AA5083 Al alloys and Q235 low-carbon mild steel plates in a butt joint configuration. The effects of laser offsets on the properties of steel/Al butt joints were investigated.
2:Sample Selection and Data Sources:
AA5083 Al alloys and Q235 low-carbon mild steel plates with dimensions of 200 × 50 mm2 were prepared. Filler materials were MG50-6 steel wires with 1.2 mm in diameter.
3:2 mm in diameter.
List of Experimental Equipment and Materials:
3. List of Experimental Equipment and Materials: A 6 kW YLR-6000 fiber laser and a GLC403/603 QUINTO gas metal arc welding power supply were used. High purity argon gas was supplied for shielding.
4:Experimental Procedures and Operational Workflow:
The laser and MIG torch were fixed to an ABB 6-axial welding robot. Laser offsets were varied from 0.6 to 0.8 mm while keeping other parameters constant.
5:6 to 8 mm while keeping other parameters constant.
Data Analysis Methods:
5. Data Analysis Methods: The cross sections and fracture path of the joints were examined using optical microscopy and scanning electron microscopy equipped with an energy-dispersive x-ray spectrometer (EDS). Tensile tests were performed using an MTS810 testing machine.
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