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Microstructure and Sliding Wear Resistance of Laser Cladded WC/Ni Composite Coatings with Different Contents of WC Particle

机译:WC含量不同的激光熔覆WC / Ni复合涂层的组织和滑动耐磨性

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摘要

The aim of this article was to address the effect of WC content on the microstructure, microhardness, and sliding wear resistance of laser cladded WC/Ni composite coatings. The content of WC particle in the feed powder varied in the range of 0-80 wt.%. Experimental results showed that the laser cladded coatings exhibited homogeneous microstructure without pores or cracks. By comparing with the 45# steel substrate, the microhardness of WC/Ni composite coatings was relatively high. The microhardness of coating increased with increasing the content of WC particles. The wear resistance of WC/Ni composite coatings was strongly dependent on the content of WC particle and their microstructure. When the WC content was lower than 40 wt.% in the feed powder, the wear rate of the coatings decreased with increasing WC content. The two-body abrasive wear was identified as the main wear mechanisms. For the coatings with WC content higher than 40 wt.% in the feed powder, their wear rate increased with increasing WC content. The three-body abrasive wear and fatigue wear were the main failures. The coating with 40 wt.% WC in the feed powder exhibited the best wear resistance.
机译:本文的目的是解决WC含量对激光熔覆WC / Ni复合涂层的组织,显微硬度和抗滑动磨损性的影响。进料粉末中WC颗粒的含量在0-80重量%的范围内变化。实验结果表明,激光熔覆涂层具有均匀的微观结构,没有孔或裂纹。与45#钢基材相比,WC / Ni复合涂层的显微硬度较高。涂层的显微硬度随WC颗粒含量的增加而增加。 WC / Ni复合涂层的耐磨性在很大程度上取决于WC颗粒的含量及其微观结构。当进料粉末中的WC含量低于40重量%时,涂层的磨损率随着WC含量的增加而降低。二体磨料磨损被确定为主要磨损机理。对于进料粉末中WC含量高于40重量%的涂层,其磨损速率随着WC含量的增加而增加。三体磨料磨损和疲劳磨损是主要故障。进料粉末中具有40 wt。%WC的涂层表现出最佳的耐磨性。

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