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首页> 外文期刊>Journal of Thermal Spray Technology >Investigation of Crack Propagation Behavior of Atmospheric Plasma-Sprayed Thermal Barrier Coatings under Uniaxial Tension Using the Acoustic Emission Technique
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Investigation of Crack Propagation Behavior of Atmospheric Plasma-Sprayed Thermal Barrier Coatings under Uniaxial Tension Using the Acoustic Emission Technique

机译:利用声发射技术研究单轴拉伸下等离子喷涂热障涂层的裂纹扩展行为

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摘要

Uniaxial tension is a common technique to characterize the adhesive strength of plasma-sprayed thermal barrier coatings (TBCs). In this work, the crack initiation, growth, and propagation behavior of atmospheric plasma-sprayed TBCs during uniaxial tension testing was investigated using the acoustic emission (AE) technique, x-ray diffraction analysis, scanning electron microscopy, and the finite-element method (FEM). The experimental results indicated that the position of crack initiation was usually located within the ceramic layer, and the crack tended to propagate along the tension direction, with some key horizontal cracks reaching the metallic layer/ceramic layer interface, after which vertical cracks initiating at the middle and lower segments of the horizontal cracks propagated along the interface. When some critical cracks were formed at the interface and a series of assembled splats separated from the coating, the coating failed completely. The AE signal could be divided into three typical stages, corresponding to the three stages of the stress-stain curve under uniaxial tension. Detailed analysis of the AE signal associated with the failure behavior was performed. The dynamic propagation patterns of the key cracks in the ceramic layer during the tension process were simulated using the FEM, whose results further confirmed the conclusions drawn from the experimental results.
机译:单轴张力是表征等离子喷涂热障涂层(TBC)粘合强度的常用技术。在这项工作中,使用声发射(AE)技术,X射线衍射分析,扫描电子显微镜和有限元方法研究了大气等离子喷涂TBC在单轴拉伸测试期间的裂纹萌生,扩展和传播行为。 (FEM)。实验结果表明,裂纹萌发的位置通常位于陶瓷层内,裂纹倾向于沿拉伸方向扩展,一些关键的水平裂纹到达金属层/陶瓷层的界面,然后垂直裂纹出现在陶瓷层。水平裂缝的中下部沿着界面传播。当在界面处形成一些关键裂纹,并且一系列组装的短片与涂层分离时,涂层完全失效。 AE信号可分为三个典型阶段,分别对应于单轴张力下的应力-染色曲线的三个阶段。对与故障行为相关的AE信号进行了详细分析。用有限元法模拟了陶瓷层拉伸过程中关键裂纹的动态扩展规律,其结果进一步证实了实验结果。

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