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Mechanical Properties and Damage Durability of Thermal Barrier Coatings with Thermal Fatigue

机译:具有热疲劳的热障涂层的力学性能和损伤耐久性

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摘要

The effects of thermal fatigue conditions on the mechanical and contact damage behavior in thermal barrier coatings (TBCs) are investigated as functions of the bond coat thickness and the preparation method. Three kinds of TBCs with different thickness in the bond coat are prepared by two different methods of APS and HVOF. The static and cyclic thermal fatigues for the TBCs are conducted at temperatures of 950℃ and 1100℃ with different dwell times of 10 and 100 hr and 10 cycles at each temperature. Mechanical properties, hardness H and modulus E, in each condition and component are measured by nano-indentation. The contact damage behaviors arc investigated by Hertzian indentation, including the cyclic fatigue behavior on the surface of the TBCs. The TGO formation is dependent on both temperature tested and time exposed, showing a similar effect with the cyclic thermal fatigues. The mechanical properties of the TBCs are increased due to the re-sintering of the top coating and the composition change of the bond coat during the thermal fatigues. The contact damage behaviors are affected by the thermal fatigue conditions and the fabrication method, independent of the bond coat thickness.
机译:研究了热疲劳条件对热障涂层(TBCs)中机械和接触破坏行为的影响,它是结合涂层厚度和制备方法的函数。通过两种不同的APS和HVOF方法制备了三种不同厚度的TBC。 TBC的静态和循环热疲劳是在950℃和1100℃的温度下进行的,不同的停留时间分别为10和100 hr,每个温度下有10个循环。通过纳米压痕测量在每种条件和组分下的机械性能,硬度H和模量E。通过Hertzian压痕研究了接触损伤行为,包括在TBC表面的循环疲劳行为。 TGO的形成取决于测试的温度和暴露的时间,显示出与周期性热疲劳相似的效果。在热疲劳期间,由于面涂层的重新烧结和粘结涂层的成分变化,TBC的机械性能得到了提高。接触破坏行为受热疲劳条件和制造方法的影响,与粘结涂层的厚度无关。

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