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Fatigue resistance assessment of slurry coating steel substrate compounds under cyclic loading

机译:循环载荷下泥浆涂料钢基复合材料的疲劳强度评估

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Slurry coatings have been used for the protection of gas turbine materials in power plants during the last years. These coatings can be applied by spaying, brushing or dipping. The main constituent elements are silicon, chromium, potassium, borium, carbon and zirconium. They are characterized by high hardness and very good resistance against corrosion, erosion, abrasive and adhesive wear. To guarantee the reliability of coated steam turbines components used in power plants, the lifetime assessment of the coatings and their failure prediction become very important. Microhardness, scratch, adhesion and pin-on-disk sliding tests are commonly used for rapid evaluation of the mechanical properties of these coatings [F. Loeffler: Thin Solid Films, Vol. 339 (1999), p. 181]. However, the above testing methods do not model the dynamic cyclic fatigue. In this paper we evaluate the fatigue resistance of slurry coatings working under cyclic loading conditions by the impact testing method. The coating failure mode and its extent were assessed by SEM observations and EDX analysis. From the experimental results it was concluded that the Si,Cr,O,B,C coatings deposited on P91 steel substrate showed an improved fatigue strength compared to that of Si,Cr,O deposited on the same substrate.
机译:在过去的几年中,浆料涂料已用于保护发电厂的燃气轮机材料。这些涂料可以通过喷涂,刷涂或浸涂来施加。主要组成元素是硅,铬,钾,硼,碳和锆。它们的特点是硬度高,对腐蚀,侵蚀,磨蚀和粘着磨损具有很好的抵抗力。为了保证用于发电厂的带涂层汽轮机组件的可靠性,涂层的寿命评估及其失效预测变得非常重要。显微硬度,划痕,附着力和针盘滑动试验通常用于快速评估这些涂层的机械性能[F. Loeffler:固态薄膜,第339(1999),p。 181]。但是,上述测试方法并未对动态循环疲劳进行建模。在本文中,我们通过冲击试验方法评估了在循环载荷条件下工作的浆料涂料的抗疲劳性。通过SEM观察和EDX分析评估涂层破坏模式及其程度。从实验结果可以得出结论,与沉积在同一基材上的Si,Cr,O相比,沉积在P91钢基材上的Si,Cr,O,B,C涂层具有更高的疲劳强度。

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