TY - JOUR
T1 - Effect of Laser Power on Cracking Behavior of TiC/Fe-based Cladding Coatings
AU - Liu, Mingxia
AU - Dou, Wenxuan
AU - Wei, Xinting
AU - Niu, Yazhi
AU - Chang, Gengrong
AU - Meng, Yu
AU - Shi, Yao
AU - Wang, Xin
AU - Zhang, Zhijian
AU - Hu, Baozhu
AU - Ma, Fei
AU - Xu, Kewei
N1 - Publisher Copyright:
© 2025 Institute of Physics Publishing. All rights reserved.
PY - 2025
Y1 - 2025
N2 - TiC/Fe-based cladding coatings were successfully prepared by high-speed laser cladding technology through the modulation of laser power. The macroscopic and microscopic structures of the coatings were analyzed by nondestructive testing, optical microscopy (OM) and scanning electron microscopy (SEM). The temperature and stress fields of the coatings were also analyzed by finite element simulation. The results showed that the crack sensitivity of the cladding coatings decreased with the increase of laser power. When the laser power was elevated from 2.4 kW to 3.6 kW, the maximum temperature of the molten pool rose from 3,162 K to 4,203 K, and the temperature gradient enhannced as well. Although the residual stress of the coating increased with the increase of laser power, the higher laser power slowed down the cooling rate of the melt pool, which would promote the growth of TiC ceramic particles and make them uniformly distributed in the melt pool, and thus reduce the crack sensitivity.
AB - TiC/Fe-based cladding coatings were successfully prepared by high-speed laser cladding technology through the modulation of laser power. The macroscopic and microscopic structures of the coatings were analyzed by nondestructive testing, optical microscopy (OM) and scanning electron microscopy (SEM). The temperature and stress fields of the coatings were also analyzed by finite element simulation. The results showed that the crack sensitivity of the cladding coatings decreased with the increase of laser power. When the laser power was elevated from 2.4 kW to 3.6 kW, the maximum temperature of the molten pool rose from 3,162 K to 4,203 K, and the temperature gradient enhannced as well. Although the residual stress of the coating increased with the increase of laser power, the higher laser power slowed down the cooling rate of the melt pool, which would promote the growth of TiC ceramic particles and make them uniformly distributed in the melt pool, and thus reduce the crack sensitivity.
UR - https://www.scopus.com/pages/publications/105004340315
U2 - 10.1088/1742-6596/2981/1/012012
DO - 10.1088/1742-6596/2981/1/012012
M3 - 会议文章
AN - SCOPUS:105004340315
SN - 1742-6588
VL - 2981
JO - Journal of Physics: Conference Series
JF - Journal of Physics: Conference Series
IS - 1
M1 - 012012
T2 - 9th International Conference on Surface Engineering, ICSE 2024
Y2 - 18 October 2024 through 20 October 2024
ER -