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Performance Study of Erosion Wear of Nanostructured WC-12Co Coatings Sprayed by HVOf

机译:HVOF喷涂纳米结构WC-12CO涂层腐蚀磨损的性能研究

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In the paper, nanostructured, multimodal and conventional WC-12Co cermet coatings were sprayed by HVOF and the properties and structures of the coatings such as microhardness, microstructure, phase composition were compared. Finally sand solid and slurry erosion wear tests were carried out and their wear failure mechanisms were explored by XRD and SEM analysis. Research results show that microstructures of nanostructured and multimodal WC-12Co coatings prepared by HVOF are dense with little porosity, and their microhardness values are obviously higher than conventional WC-12Co coating. As well, it was found that nanostructured and multimodal WC-12Co coatings exhibited better sand solid and slurry erosion wear resistance in comparison with conventional coating and nanostructured WC-12Co coatings possessed the best sand solid erosion resistance properties at large impact angles and slurry erosion wear resistance. Testing results also show that although decarburization of WC occurred during spraying multimodal and nanostructured WC-12Co powders, the decarburization of WC for the nanostructured powder was more severe.
机译:在纸上,通过HVOF喷雾纳米结构,多式联运和常规的WC-12CO金属陶瓷涂层,比较涂层如显微硬度,微观结构,相组合物的性质和结构。最后进行了砂固体和泥浆侵蚀磨损试验,XRD和SEM分析探索了它们的磨损失效机制。研究结果表明,通过HVOF制备的纳米结构和多式联运WC-12CO涂层的微观结构具有较小的孔隙率,并且它们的显微硬度值明显高于常规WC-12CO涂层。同样,发现纳米结构和多模式WC-12CO涂层表现出更好的砂固体和浆料腐蚀耐磨性,与常规涂层和纳米结构WC-12CO涂层相比具有在大冲击角度和浆料侵蚀磨损中具有最佳的砂固体腐蚀性能反抗。测试结果还表明,虽然在喷涂多式式和纳米结构WC-12CO粉末期间发生WC的脱碳,但纳米结构粉末的WC脱碳更严重。

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