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Effects of thickness on thermal and mechanical properties of air-plasma sprayed thermal barrier coatings

机译:厚度对等离子喷涂热障涂层热力学性能的影响

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Thermal barrier coating systems (TBCs) prepared by an air-plasma spray (APS) have been used to protect metallic components of gas turbines because of its economic advantage. To enhance the energy efficiency of gas turbine systems, the operating temperature is increased to over 1300 °C, which requires a new material with low thermal conductivity and an increase of TBC thickness. In this study we have focused the microstructure related to the thickness of TBC and their thermal properties, with specific attention to defect species as well as to its morphology with the thermal exposure time. Resintering of TBC happens during thermal exposure in a high temperature, resulting in the less strain tolerance and the higher thermal conductivity. In order to investigate the thermal properties of TBC related to the microstructural evolution, TBCs with different thicknesses of 200 μm, 400 μm, 600 μm, and 2000 μm were deposited on a flat graphite by the APS. The thermal exposure tests were conducted in different dwell time till 800h at 1100 °C. The thermal diffusivity is significantly increased after thermal exposures, depending on the thermal exposure time. Microstructural analysis clearly shows that the variation of thermal diffusivity is ascribed to the coalescence of small cracks and the resintering effect. The hardness values of TBCs are also increased as well. The relationship between mechanical properties and TBC thickness is discussed, including the effect of thickness on thermal properties.
机译:由空气等离子喷涂(APS)制备的热障涂层系统(TBC)由于其经济优势而已被用于保护燃气轮机的金属部件。为了提高燃气轮机系统的能效,将工作温度提高到1300°C以上,这需要一种导热系数低且TBC厚度增加的新材料。在这项研究中,我们集中研究了与TBC厚度及其热性能有关的微观结构,特别关注缺陷种类及其随热暴露时间的形态。 TBC的再烧结会在高温下进行热暴露,从而导致较小的应变容差和较高的导热率。为了研究与微结构演变相关的TBC的热性能,通过APS将厚度分别为200μm,400μm,600μm和2000μm的TBC沉积在扁平石墨上。在1100°C下,在800h的不同停留时间内进行热暴露测试。取决于热暴露时间,热暴露后热扩散率显着增加。显微组织分析清楚地表明,热扩散率的变化归因于小裂纹的聚结和酯化效应。 TBC的硬度值也增加。讨论了机械性能与TBC厚度之间的关系,包括厚度对热性能的影响。

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