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March 29, 2026Journal of Manufacturing and Materials Processing1 citationsOpen Access

Guide to a Deterministic Control of Laser Materials Processing with Dynamic Beam Shaping

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RWRudolf WeberUniversity of StuttgartTGThomas GrafUniversity of StuttgartKGKim GlumannUniversity of Stuttgart

Key Points

  • The aim is to establish a standardized nomenclature for dynamic beam shaping and its effects on laser processes.
  • Proposed a nomenclature for types of dynamic beam shaping and process modifications.
  • Identified characteristic time constants and frequencies relevant to laser processing.
  • Used a laser system with dynamic beam shaping capabilities at frequencies up to 80 MHz.
  • Demonstrated influence of three process zones on weld porosity.
  • Provided insights into effective frequency selection for improved material processing.

Abstract

Dynamic beam shaping opens new possibilities for improving the quality and productivity of industrial laser material processing applications such as welding and cutting. However, dynamic beam shaping involves time constants and frequencies that must be selected correctly to successfully modify a given laser process. This paper proposes a standardized nomenclature for the possible types of dynamic beam shaping and the resulting dynamic process modifications, and relates these to characteristic time constants and frequencies at which the process modifications have a particularly strong influence on the process. These characteristic frequencies define three process regimes that have distinctly different effects on the process. An overview of typical time constants and frequencies in laser processes aids in understanding the occurrence of characteristic frequencies. Knowledge of the process regimes allows for a systematic selection of frequencies in dynamic beam shaping to achieve targeted dynamic process modifications, e.g., for pore reduction. Using a laser system capable of dynamic beam shaping at frequencies of up to 80 MHz, the influence of the three process zones on the porosity of the weld was demonstrated using deep welds in cast aluminum as an example.

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Cite This Study

Weber et al. (2026) studied this question.

synapsesocial.com/papers/69c8c2d1de0f0f753b39d430https://doi.org/10.3390/jmmp10040113
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