研究目的
To achieve a better understanding of the strengthening mechanism in the commercially pure (CP) Ti welds through autogenously laser beam and laser-MIG hybrid welding processes.
研究成果
Both laser beam and laser-MIG hybrid welded joints exhibited reinforced weld zone resulted in higher tensile strength of the overall joints. The strengthening mechanisms were attributed to the formation of twin grains and specific grain textures in the weld zones.
研究不足
The influences of minor elements, such as oxygen and nitrogen, on the weld properties were not taken into account in this study.
1:Experimental Design and Method Selection
Autogenously laser beam and laser-MIG hybrid welding of 4.2 mm thick CP-Ti plates were performed to investigate the correlation between microstructure, texture distribution, and mechanical properties.
2:Sample Selection and Data Sources
Grade 2 hot rolled commercially pure titanium plates in a dimension of 120 mm × 60 mm × 4.2 mm were used. ERTA2ELI filler wire with 1.0 mm diameter was used in the laser-MIG hybrid welding process.
3:List of Experimental Equipment and Materials
YLS-6000 IPG high-brightness multi-mode ytterbium-doped (Yb-fiber) continuous wave (CW) laser system, TPS-4000 Fronius welding machine, optical microscopy (OM), scanning electron microscope (SEM), electron backscattered diffraction (EBSD), X-ray diffraction (XRD), KB30S automated hardness tester, SANS CMT5205 automated testing system.
4:Experimental Procedures and Operational Workflow
Welding parameters were optimized to produce defect-free welds. Microstructure and texture were analyzed with OM, SEM, and EBSD. Microhardness was measured, and tensile tests were conducted to assess mechanical properties.
5:Data Analysis Methods
EBSD data was processed using Oxford Instruments HKL Channel 5 software. XRD was used to identify phases. Microhardness and tensile strength were statistically analyzed.
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YLS-6000 IPG high-brightness multi-mode ytterbium-doped (Yb-fiber) continuous wave (CW) laser system
YLS-6000
IPG
Used for both laser beam and laser-MIG hybrid welding in this study.
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TPS-4000 Fronius welding machine
TPS-4000
Fronius
Used for laser-MIG hybrid welding.
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KB30S automated hardness tester
KB30S
Used to measure Vickers microhardness at a load of 300 g with 10s dwelling time.
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SANS CMT5205 automated testing system
CMT5205
SANS
Used for uniaxial tensile tests at room temperature with a 5 mm/min speed.
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