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Delamination Cracking in Thermal Barrier Coating System

机译:热障涂层体系中的分层开裂

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摘要

Delamination cracking in thermal barrier coating (TBC) system is studied with the newly developed theoretical model. A semi-infinite long interface crack is pre-existing. The thermal stress and temperature gradient in TBC system are designated by a membrane stress P and a bending moment M. In this case, the effects of plastic deformation, creep of ceramic coating, as well as thermal growth oxidation and temperature gradient in TBC system are considered in the model due to the fact that these effects are considered in the calculation of thermal stress. The energy release rate, mode I and mode II stress intensity factors, as well as mode mixed measure ψ, are derived. The emphatic discussion about PSZ/Ni-alloy reveals that the TBC system may not fail in the form of coating delamination during the period of heat hold. However, the failure may be in the form of coating delamination during cooling or in the heating period during the second cycle or later cycles. The conclusion is consistent with the experimental observations. The delamination of ceramic coating is induced by the compressive load in the coating.
机译:利用新建立的理论模型研究了热障涂层(TBC)体系中的分层开裂。半无限长的界面裂缝是预先存在的。TBC体系中的热应力和温度梯度由膜应力P和弯矩M表示。在这种情况下,由于在计算热应力时考虑了塑性变形、陶瓷涂层蠕变以及TBC体系中的热胀烧、氧化和温度梯度的影响,因此在模型中考虑了这些影响。推导了能量释放速率、模态I和模态II应力强度因子以及模态混合测量ψ。对PSZ/Ni合金的重点讨论表明,TBC体系在保温期间可能不会以涂层分层的形式失效。然而,故障可能表现为在冷却期间或在第二个循环或以后循环的加热期间涂层分层的形式。结论与实验结果一致。陶瓷涂层的分层是由涂层中的压缩载荷引起的。

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