Soltanipour Ali, Heydarzadeh Sohi Mahmoud, Shoja-Razavi Reza, Barekat Masoud, Erfanmanes Mohammad
School of Metallurgy and Materials, College of Engineering, University of Tehran, Tehran, Iran.
Faculty of Materials & Manufacturing Technology, Malek Ashtar University of Technology, Iran.
Heliyon. 2024 Apr 26;10(9):e30176. doi: 10.1016/j.heliyon.2024.e30176. eCollection 2024 May 15.
This investigation aims to study the effect of laser cladding parameters on the microstructure of Stellite 6 on the X19CrMoNbVN11-1 stainless-steel substrate. First, Stellite 6 powder was coated on the X19CrMoNbVN11-1 substrate using the laser cladding method. The effect of laser cladding parameters (i.e., laser power, scanning speed, and powder feed rate) was studied on the microstructure of deposits. The secondary dendritic arm spacing was assessed, and the structural defects were studied (e.g., lack of bonding, porosity, and crack). The results revealed that the microstructure has changed from coating/substrate interface to coating surface, from plate-cellular to columnar and equiaxed dendrites. Also, an increase in the laser power increased the cellular structure in the coating/substrate interface and equiaxed dendrites in the coating surface. The cooling rate (G × R) increased by increasing the scanning and powder injection rates. The microstructure of the Stellite 6 was composed of cobalt solid-solution γ.
本研究旨在研究激光熔覆参数对X19CrMoNbVN11-1不锈钢基体上司太立合金6微观结构的影响。首先,采用激光熔覆方法将司太立合金6粉末涂覆在X19CrMoNbVN11-1基体上。研究了激光熔覆参数(即激光功率、扫描速度和送粉速率)对熔覆层微观结构的影响。评估了二次枝晶臂间距,并研究了结构缺陷(如结合不良、气孔和裂纹)。结果表明,微观结构从涂层/基体界面到涂层表面发生了变化,从板状胞状变为柱状和等轴枝晶。此外,激光功率的增加增加了涂层/基体界面处的胞状结构和涂层表面的等轴枝晶。通过提高扫描速率和送粉速率,冷却速率(G×R)增加。司太立合金6的微观结构由钴固溶体γ组成。