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January 22, 2026Metals1 citationsOpen Access

The Effect of Ultrasonic Vibration Assistance During Laser Lap Welding on the Microstructure and Properties of Galvanized Steel/Mg Joints

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DWDan WangCZChengsen ZhuJGJuming Gao

Key Points

  • To compare the effects of ultrasonic vibration assistance on the microstructure and mechanical properties of welded galvanized steel/Mg joints.
  • Compared laser lap-welded joints with and without ultrasonic vibration assistance.
  • Adjusted laser beam power and ultrasonic amplitude during welding.
  • Analyzed weld formation, microstructure, and mechanical properties of the joints.
  • Ultrasonic vibration improved weld microstructure and reduced average grain area from 583 μm2 to 324 μm2.
  • Tensile shear strength increased significantly from 179.9 N/mm to 290 N/mm with ultrasonic vibration.
  • The distribution of the Mg-Zn reinforcing phase became more uniform and denser.

Abstract

In this work, a laser lap-welded joint of galvanized steel/Mg and a laser lap-welded joint of galvanized steel/Mg assisted by ultrasonic vibration were compared. By adjusting the laser beam power and ultrasonic amplitude, the appropriate welding process parameters were obtained. The weld formation, microstructure and mechanical properties were studied and analyzed. The results indicated that the addition of ultrasonic vibration generated an excitation force with a certain frequency and amplitude on the weldment, making the molten metal in the molten pool produce ultrasonic forced vibration, and producing the effects of cavitation, acoustic streaming, mechanical stirring and heat, thus reducing welding residual stress and welding-deformation, porosity and incomplete-fusion defects. In addition, it can make the fusion zone transition evenly, improve the wettability, refine the weld grain, and reduce the average grain area from 583 μm2 to 324 μm2. Moreover, the distribution of Mg-Zn reinforcing phase at the interface was more uniform and denser, and the maximum tensile shear strength increased from 179.9 N/mm to 290 N/mm, indicating that the addition of ultrasonic vibration was conducive to improving the comprehensive mechanical properties of the joint.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/6971be8d642b1836717e334chttps://doi.org/10.3390/met16010120
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