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March 3, 2026International Journal of Applied Ceramic Technology3 citations

Surface morphology characteristics and ablation thresholds of silicon carbide ceramics by femtosecond laser irradiation

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YDYixin DongXi'an University of Architecture and TechnologyYZYing ZhangXi'an University of Architecture and TechnologyYZYuanmin ZhangXi'an University of Architecture and Technology

Key Points

  • Ablation thresholds exhibited variability across three stages as pulse number increased, indicating complexities in femtosecond laser interactions.
  • Under linearly polarized light, a higher efficiency of multiphoton ionization led to a reduced ablation threshold, influencing processing outcomes.
  • Observational analysis of femtosecond laser effects showed the formation of unique surface morphology, primarily characterized by periodic streak structures.
  • This investigation lays foundational principles for advanced micromachining techniques, specifically suited for creating silicon carbide ceramic components.

Abstract

Abstract Femtosecond laser ablation technology can overcome the challenges associated with fabricating complex components and the low machining accuracy inherent in traditional processing of silicon carbide ceramics, showcasing its broad application potential. In this work, the effects of pulse number and polarized light state on the ablation threshold and morphology of ablation pits were systematically investigated. The variation in the ablation threshold could be divided into three stages as the number of pulses increases. The efficiency of multiphoton ionization under linearly polarized light was higher than that under circularly polarized light, resulting in a lower ablation threshold. The surface morphology of ablation pits induced by linearly polarized light predominantly exhibited periodic streak structures and an ordered assembly of nanoparticles. The growth rate of the diameter was lower than that of the depth of the ablation pit, resulting in the formation of a conical structure. Due to Coulomb explosion and the cavitation backflow effect, the ejected silicon and carbon underwent oxidation reactions outside the ablation pit. This investigation provides both theoretical frameworks and practical guidelines for femtosecond laser micromachining of SiC ceramic components.

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Cite This Study

Dong et al. (2026) studied this question.

synapsesocial.com/papers/69a75ae6c6e9836116a21594https://doi.org/10.1111/ijac.70144
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