Affiliation:
1. College of Mechatronics and Automotive, Chizhou Vocational and Technical College, Chizhou 247000, China
2. College of Mechanical Engineering, Anhui Science and Technology University, Bengbu 233100, China
Abstract
This study focuses on Fe-based laser cladding coatings containing varying levels of four elements, and the objective is to investigate the influence of TiC addition on the microstructural evolution, microhardness, wear resistance, and corrosion resistance of these Fe-based composite coatings. Fe/TiC composite coatings were prepared by incorporating 20 wt.% TiC into four types of Fe-based coatings. The coatings were characterized using X-ray diffraction (XRD), optical microscopy for microstructural observation, microhardness testing, friction and wear tests, and electrochemical analysis. The results indicate that the phases of the coatings are primarily composed of α-Fe and Cr7C3. Upon the addition of TiC, the TiC and Ni3Ti phases were observed in the coatings. The coatings mainly consist of columnar crystals, dendritic structures, equiaxed grains, and cellular structures, with petal-shaped TiC particles distributed within the coating matrix. TiC effectively enhances the microhardness and wear resistance of the coatings. The average microhardness of the coatings increased from 455.8 ± 20.8 HV0.2 to 802.8 ± 41.6 HV0.2 with TiC addition. Simultaneously, the wear rate of coating A2 decreased from 1.51 × 10−6 g/(N·m) to 1.02 × 10−7 g/(N·m), indicating an order of magnitude improvement in wear resistance. However, TiC destroys the denseness of the Fe coating, the current corrosion density increases by 28% on average, and the corrosion resistance decreases significantly.
Funder
Foundation of Colleges and Universities in Anhui Province
excellent top talent project in Colleges and Universities
University Synergy Innovation Program of Anhui Province
Anhui Province Graduate Education Quality Engineering Project
reserve candidates for academic and technical leaders of Anhui Science and Technology University
major college subject of Anhui Science and Technology University
talent program of Anhui Science and Technology University
Anhui Provincial Natural Science Foundation
Ministry Equipment Pre-research Project Foundation of China
Action Discipline (Professional) Leader Training Project for Middle and Young Teachers of Anhui Province
Reference28 articles.
1. A comparative study on microstructure and properties of traditional laser cladding and high-speed laser cladding of Ni45 alloy coatings;Yuan;Surf. Coat. Technol.,2021
2. Recent trends in laser cladding and surface alloying;Siddiqui;Opt. Laser Technol.,2021
3. Zhang, Z., Li, W., Yang, R., Zhao, X., and Zhang, H. (2023). Microstructure and Tribo-Behavior of WC–Cr3C2–Ni Coatings by Laser Cladding and HVAF Sprayed: A Comparative Assessment. Materials, 16.
4. Effect of Phase Constituents on Tribological and Corrosion Properties of Fe-based Laser Clad Carbon Steel;Guo;Lasers Eng.,2023
5. Laser cladding deposition of a Fe-based metallic glass on 304 stainless steel substrates;Henao;J. Therm. Spray Technol.,2022
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