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Residual stresses in environmental and thermal barrier coatings on curved superalloy substrates: experimental measurements and modelling

机译:弯曲高温合金基底上的环境和隔热涂层中的残余应力:实验测量和建模

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摘要

Residual stresses within thermal barrier coated (TBC) systems are predicted using finite element models and are compared against experimental measurements taken using Raman and photo-stimulated luminescence piezo-spectroscopic methods. Two types of specimens were considered: flat specimens without TBC, and aerofoil shaped specimens with TBC. Comparisons between model predictions and experimentally measured stresses and also the relationship between substrate curvature and residual stresses on subsequent spallation of the aerofoil specimen were made. For the flat specimen, predicted and measured residual stresses are of the same order of magnitude. Both studies have indicated that larger compressive residual stresses arise from higher substrate curvatures. The results improve the understanding of initiation and propagation of TBC cracks which occurs preferentially at locations with high substrate convex curvature.
机译:使用有限元模型预测了热障涂层(TBC)系统中的残余应力,并将其与使用拉曼光谱和光激发发光压电光谱法进行的实验测量结果进行了比较。考虑了两种类型的标本:没有TBC的扁平标本和带有TBC的翼型标本。比较了模型预测值和实验测得的应力,以及翼型试样随后剥落时基体曲率和残余应力之间的关系。对于扁平试样,预测和测量的残余应力具有相同的数量级。两项研究均表明,较高的基底曲率会产生较大的压缩残余应力。结果提高了对TBC裂纹的萌生和扩展的理解,而TBC裂纹优先出现在具有高基板凸曲率的位置。

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