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February 5, 2026Micromachines0 citationsOpen Access

Graded Brittle–Ductile Transition via Laser-Induced Thermal Gradient for Broaching of Z10C13 Steel

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GLGuozhen LiuZMZhen MengJZJunqiang Zheng

Key Points

  • The aim is to activate the skin effect for improved broaching of Z10C13 steel by inducing surface embrittlement.
  • Utilized laser defocus gradient modification to create a gradient remelting layer.
  • Induced microstructural changes resulting in ultrafine grains and a high-density dislocation zone.
  • Measured hardness, cutting force, and surface roughness before and after treatment.
  • Achieved a 12.95% increase in surface hardness (31.4 HRC).
  • Reduced cutting force by 34.07%.
  • Improved surface roughness by 63.74% (Sz = 28.80 μm).
  • Established a crack-free subsurface zone due to the crack-deflection mechanism.

Abstract

This paper presents a breakthrough in activating the skin effect at conventional broaching speeds (1–8 m/min) by using laser defocus gradient modification to induce surface embrittlement in martensitic stainless steel Z10C13. Through controlled defocusing, a 50 μm gradient remelting layer was created, which features ultrafine grains (0.8 μm) and a high-density geometrically necessary dislocation (GND) zone (ρGND = 2.27 μm−3). The quasi-cleavage fracture was triggered via dislocation pinning by non-oriented low-angle grain boundaries (28.4% LAGBs). Multiscale characterization confirms that this microstructural transformation enhances surface hardness by 12.95% (reaching 31.4 HRC), reduces cutting force by 34.07%, and improves surface roughness by 63.74% (Sz = 28.80 μm). Simultaneously, a parallel crack-deflection mechanism restricts subsurface damage propagation, resulting in a crack-free subsurface zone. These results demonstrate the effectiveness of the embrittlement–toughening dichotomy for precision machining of difficult-to-cut materials under low-speed constraints.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/698434dff1d9ada3c1fb3904https://doi.org/10.3390/mi17020204
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