DOAJ Open Access 2025

Effect of Electrically Assisted Heat Treatment on Crack Arrest and Healing in Laser-Cladded Ni–Based Coatings

Xuxiang Song Xiao Li Wenping Wang Zhicheng Zhao

Abstrak

Cracks in laser-cladded coatings represent a critical challenge that severely limits their industrial deployment. In this study, high-frequency pulsed direct current-assisted electrically assisted heat treatment (EAHT) was applied to repair cracks in laser-cladded Ni60/WC coatings deposited on 45# medium carbon steel. The influence of current density and treatment duration on crack arrest and healing behavior was systematically investigated. Dye penetrant testing and scanning electron microscopy (SEM) were employed to characterize the morphology and evolution of cracks before and after EAHT, while hardness, fracture toughness, and wear resistance tests were conducted to evaluate the mechanical properties. The results revealed that the crack repair process proceeds through three distinct stages: internal filling, nucleation and growth of healing points, and complete crack closure. The combined effects of Joule heating and current crowding induced by EAHT significantly facilitated progressive crack healing from the bottom upward. Optimal crack arrest and healing were achieved at a current density of 6.25 A/mm<sup>2</sup>, resulting in a maximum fracture toughness of 10.74 MPa·m<sup>1/2</sup> and a transition of the wear mechanism from spalling to abrasive wear. This study demonstrates that EAHT promotes selective crack-tip heating and microstructural regulation through thermo-electro-mechanical coupling, thereby markedly enhancing the comprehensive performance of Ni-based WC coatings.

Penulis (4)

X

Xuxiang Song

X

Xiao Li

W

Wenping Wang

Z

Zhicheng Zhao

Format Sitasi

Song, X., Li, X., Wang, W., Zhao, Z. (2025). Effect of Electrically Assisted Heat Treatment on Crack Arrest and Healing in Laser-Cladded Ni–Based Coatings. https://doi.org/10.3390/jmmp9110348

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Informasi Jurnal
Tahun Terbit
2025
Sumber Database
DOAJ
DOI
10.3390/jmmp9110348
Akses
Open Access ✓