4.6 Article

Enhancement of Weldability at Laser Beam Welding of 22MnB5 by an Entrained Ultrasonic Wave Superposition

期刊

MATERIALS
卷 15, 期 14, 页码 -

出版社

MDPI
DOI: 10.3390/ma15144800

关键词

laser welding; ultrasonic wave superposition; ultrasonic vibration; non-conventional welding; structural influence; grain refining; boron-alloyed heat treatable steel

资金

  1. LOEWE-Landes-Offensive zur Entwicklung Wissenschaftlich-okonomischer Exzellenz, Forderlinie 3: KMU-Verbundvorhaben (State Offensive for the Development of Scientific and Economic Excellence) [671/18-94]

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This paper studies the potential of directional ultrasonic wave superposition using moving sound generators for laser beam welding of high-strength steel alloys. The experiments show that a suitable superposition of ultrasonic waves by the moving sound generators can improve the distribution of AlSi particles in the melt as well as the microstructure within the weld, thus enhancing the performance of the welding.
In this paper, the potential of directional ultrasonic wave superposition by moving sound generators for laser beam welding of high-strength steel alloys 1.5528 (22MnB5) is studied. Steel sheets of identical thickness and in form of tailored blanks were joined in butt joint configuration. The influences of the various excitation parameters of the moving sound generators on the ultrasonic coupling and their influence on the distribution of the AlSi coating components within the melting zone and the weld seam characteristics are investigated. Etched cross-sections, scanning electron microscopy, energy dispersive X-ray spectroscopy, and electron backscattering measurements were used as the investigation methods to determine the AlSi distribution in the weld as well as its microstructure. The results presented a series of experiments which show that a suitable superposition of ultrasonic waves by the moving sound generators lead to a more homogeneous distribution of AlSi particles in the melt as well as to a finer microstructure within the weld, which improves the mechanical-technological properties.

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