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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Wear resistance and wear mechanisms of WC-12%Co thermal sprayed coatings in three-body abrasion
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Wear resistance and wear mechanisms of WC-12%Co thermal sprayed coatings in three-body abrasion

机译:WC-12%Co热喷涂涂层在三体磨损中的耐磨性和磨损机理

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摘要

In this study, the three-body abrasion resistance of AISI 1020 annealed steel samples coated with WC-12%Co coatings produced by the Jet Kote thermal spray process was evaluated. The tests were performed using SiO{sub}2, Al{sub}2O{sub}3 and SiC as abrasives and five levels of stress ranging from 0.10 to 0.60 MPa. By measuring the weight loss, the wear rate was evaluated after reaching the steady state of wear. Characterisation of the abrasives was performed using an image analyser and scanning electron microscopy. The microstructure and wear mechanisms of the coatings were characterised by scanning electron microscopy. The relationship between stress and wear rate was found to be dependant on abrasive type; this is due to different degrees of fragmentation of the abrasive. The effect of stress on the wear rate depended on the nature of the abrasive due to the fragmentation process of the abrasives. The results indicated that abrasion resistance and predominant wear mechanisms were strongly dependent on abrasive hardness. In tests using SiO{sub}2 abrasive a combination of micropolishing associated with gradual degradation of the lamellae was the predominant wear mechanism. Plastic deformation by microploughing and microcutting were the predominant wear mechanism in tests with Al{sub}2O{sub}3 abrasive. In tests with SiC abrasive, interlamellar brittle fracture was the predominant mechanism.
机译:在这项研究中,评估了用Jet Kote热喷涂工艺生产的WC-12%Co涂层AISI 1020退火钢样品的三体耐磨性。使用SiO {sub} 2,Al {sub} 2O {sub} 3和SiC作为磨料并在0.10至0.60 MPa的五个应力水平下进行了测试。通过测量失重,在达到稳定磨损状态后评估磨损率。使用图像分析仪和扫描电子显微镜对磨料进行表征。通过扫描电子显微镜对涂层的微观结构和磨损机理进行了表征。发现应力与磨损率之间的关系取决于磨料类型。这是由于磨料的破碎程度不同所致。由于磨料的破碎过程,应力对磨损率的影响取决于磨料的性质。结果表明,耐磨性和主要磨损机理在很大程度上取决于磨料硬度。在使用SiO {sub} 2磨料的测试中,微抛光与薄片逐渐降解相关的组合是主要的磨损机理。在用Al {sub} 2O {sub} 3磨料进行的测试中,微犁和微切引起的塑性变形是主要的磨损机理。在用SiC磨料进行的测试中,层间脆性断裂是主要的机理。

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