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首页> 外文期刊>Journal of Thermal Spray Technology >Life Prediction of Atmospheric Plasma-Sprayed Thermal Barrier Coatings Using Temperature-Dependent Model Parameters
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Life Prediction of Atmospheric Plasma-Sprayed Thermal Barrier Coatings Using Temperature-Dependent Model Parameters

机译:温度依赖模型参数的大气等离子体喷涂热阻挡涂层的寿命预测

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摘要

The failure analysis and life prediction of atmospheric plasma-sprayed thermal barrier coatings (APS-TBCs) were carried out for a thermal cyclic process. A residual stress model for the top coat of APS-TBC was proposed and then applied to life prediction. This residual stress model shows an inversion characteristic versus thickness of thermally grown oxide. The capability of the life model was demonstrated using temperature-dependent model parameters. Using existing life data, a comparison of fitting approaches of life model parameters was performed. A larger discrepancy was found for the life predicted using linearized fitting parameters versus temperature compared to those using non-linear fitting parameters. A method for integrating the residual stress was proposed by using the critical time of stress inversion. The role of the residual stresses distributed at each individual coating layer was explored and their interplay on the coating's delamination was analyzed.
机译:对大气等离子喷涂热障涂层(APS-TBCs)的热循环过程进行了失效分析和寿命预测。提出了APS-TBC面漆的残余应力模型,并将其应用于寿命预测。该残余应力模型显示了热生长氧化物厚度的反转特性。使用依赖于温度的模型参数证明了生命模型的能力。利用现有寿命数据,对寿命模型参数的拟合方法进行了比较。与使用非线性拟合参数相比,使用线性拟合参数预测的寿命与温度之间存在较大差异。提出了一种利用应力反演临界时间对残余应力进行积分的方法。探讨了分布在各涂层上的残余应力的作用,并分析了它们对涂层分层的相互作用。

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