4.6 Article

Microstructures and Properties of Laser Cladding Al-TiC-CeO2 Composite Coatings

Journal

MATERIALS
Volume 11, Issue 2, Pages -

Publisher

MDPI
DOI: 10.3390/ma11020198

Keywords

laser cladding; Al-TiC-CeO2 composite coating; microstructure; property

Funding

  1. Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD)
  2. Key Research and Development Project of Jiangsu Province [BE2016052]

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Al-TiC-CeO2 composite coatings have been prepared by using a laser cladding technique, and the microstructure and properties of the resulting composite coatings have been investigated using scanning electron microscopy (SEM), a 3D microscope system, X-ray diffraction (XRD), micro-hardness testing, X-ray stress measurements, friction and wear testing, and an electrochemical workstation. The results showed that an Al-Fe phase appears in the coatings under different applied laser powers and shows good metallurgical bonding with the matrix. The dilution rate of the coating first decreases and then increases with increasing laser power. The coating was transformed from massive and short rod-like structures into a fine granular structure, and the effect of fine grain strengthening is significant. The microhardness of the coatings first decreases and then increases with increasing laser power, and the maximum microhardness can reach 964.3 HV0.2. In addition, the residual stress of the coating surface was tensile stress, and crack size increases with increasing stress. When the laser power was 1.6 kW, the coating showed high corrosion resistance.

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