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Study of erosion behaviour of conventional and nanostructured WC-12Co coatings sprayed by atmospheric plasma

机译:常压和纳米结构WC-12Co涂层大气等离子体侵蚀行为研究

摘要

Thermal sprayed WC-Co coatings are used extensively to enhance the wear resistance of a wide range of engineering components. In this paper, erosive resistance of plasma atmospheric sprayed WC-12Co coatings has been evaluated. Solid particle erosion tests were conducted on these coatings at different angles of impact with silica and alumina abrasives of size 250 µm. Coatings have been deposited by using micrometric and nanometric agglomerated powders, employing H2 and He as plasmogen gas. In order to determine the erosion regime (ductile or brittle), the influence of impact angle on the erosion rate has been studied. Optical microscope and FESEM have been used to analyze the eroded surface. The influence of the plasmogen gas and the powder employed on the erosive behaviour of the coating has been evaluated. An attempt to connect the erosive behaviour with mechanical properties and microstructure has been made. Hardness has been determined by means of several measurements of Vickers microhardness; fracture toughness has been estimated through indentation method. Identification of phases has been made by means of X Ray diffraction
机译:热喷涂WC-Co涂层被广泛使用,以增强各种工程组件的耐磨性。本文评估了等离子大气喷涂WC-12Co涂层的耐腐蚀性。使用尺寸为250 µm的二氧化硅和氧化铝磨料,以不同的冲击角度对这些涂层进行了固体颗粒腐蚀测试。通过使用微米级和纳米级团聚粉末,使用H2和He作为纤溶原气体来沉积涂层。为了确定腐蚀状态(韧性或脆性),已经研究了冲击角对腐蚀速率的影响。光学显微镜和FESEM已用于分析腐蚀的表面。已经评估了所产生的等离子体气体和粉末对涂层侵蚀行为的影响。已经尝试将侵蚀行为与机械性能和微观结构联系起来。硬度是通过多次测量维氏显微硬度来确定的。断裂韧性已通过压痕法估算。已经通过X射线衍射鉴定了相

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