稀土Y2O3对激光熔覆Stellite6/WC复合涂层组织与性能的影响

    Effect of Rare Earth Y2O3 on Microstructure and Properties of Stellite6/WC Composite Coating by Laser Cladding

    • 摘要: 采用激光熔覆同步送粉法在45钢基体上制备不同稀土Y2O3添加量增强的Stellite6/WC钴基合金复合涂层。通过XRD、SEM、显微硬度计和摩擦磨损试验机,分析研究了不同稀土Y2O3添加量对复合涂层相组成、显微组织、显微硬度和摩擦磨损性能的影响。结果表明:Y2O3添加量不超过0.9wt%时,复合涂层的主要相组成为固溶体γ-Co、CoCx、M(Cr,Co,Ni)23C6、W2C、Cr7C3、Cr3C2、Y2O3、Co2Y和Y2Co17,超过0.9wt%时,增强相会减少。Y2O3添加量为0.9wt%时,熔覆层组织相对最细小致密,性能最佳,其复合涂层平均显微硬度为608.5 HV0.2,耐磨性最好,磨损机制主要为轻微的磨粒磨损。

       

      Abstract: Stellite6/WC Co-based alloy composite coatings reinforced with different rare earth Y2 O3 additions were prepared on the surface of 45 steel substrates by laser cladding synchronous powder feeding method. The effects of different rare earth Y2 O3 additions on the phase composition, microstructure, microhardness and friction and wear properties were analyzed by XRD, SEM, microhardness tester and friction and wear tester. The results show that the main phase composition of the composite cladding layer is solid solution γ-Co, CoCx, M(Cr, Co, Ni)23C6, W2C, Cr7C3, Cr3C2, Y2O3, Co2Y and Y2 Co17when the addition of Y2 O3 is less than 0.9 wt%, and the reinforcement phase decreases when the addition of Y2 O3 is more than0.9 wt%. When the Y2 O3 addition is 0.9 wt%, the microstructure of the coating is smallest and densest, and the performance is best. The average microhardness of the composite coating is 608.5 HV0.2, the wear resistance is best, and the wear mechanism is mainly slightly abrasive wear.

       

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