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June 3, 2026Materials0 citationsOpen Access

Numerical Simulation of Laser Cladding Using Cable Wires

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WLWeihang LiuXGXueping GuoKJKaiyong Jiang

Key Points

  • The aim is to understand how structural and material parameters of cable wires affect molten pool dynamics during laser cladding.
  • Developed a multi-physics numerical model for laser cladding of Al50Si6Ti8Cr12Cu12Ni12 cable wires.
  • Employed the Level Set Method to track fluid interfaces during the cladding process.
  • Investigated temperature distribution, stress fields, and elemental homogeneity in the molten pool.
  • Chromium (Cr) addition reduces viscosity in the molten pool.
  • A torsional pitch of ≤4 mm is essential for achieving defect-free and uniform HEA coatings.
  • The findings provide insights into process optimization and alloy design for cable-wire laser cladding.

Abstract

Cable wires provide a viable technical pathway for the laser additive manufacturing of high-entropy alloys (HEAs). However, the complex interplay of structural and material parameters of cable wires leads to significant variations in molten pool dynamics, which poses challenges to the fabrication of high-quality HEA coatings. To clarify the effects of these key factors on molten pool behavior, a multi-physics numerical model for the laser cladding of Al50Si6Ti8Cr12Cu12Ni12 cable wires was established in this study. A dedicated physical model for cable wires was developed, and the Level Set Method was employed to track fluid interfaces throughout the cladding process. Based on the proposed model, the temperature distribution, stress fields, and elemental homogeneity within the molten pool were systematically investigated. The results reveal that chromium (Cr) addition induces a viscosity reduction, and a torsional pitch of ≤4 mm is critical for achieving defect-free, compositionally uniform HEA coatings, which provides novel insights for process optimization and alloy design of cable-wire laser cladding.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc509dee9eb8c0dce6823https://doi.org/10.3390/ma19112326
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