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Chemo-thermo-mechanical modeling of EB-PVD TBC failure subjected to isothermal and cyclic thermal exposures

机译:EB-PVD TBC故障对等温和循环热曝光的化学热机械建模

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摘要

The thermal barrier coatings (TBC) are working under chemo-thermo-mechanical loading conditions and the failure process is characterized by complex aluminum migration, oxidation reactions and cyclic thermo-me-chanical degradation. In the present work, the aluminum migration in EB-PVD TBCs subjected to isothermal and cyclic thermal exposure was studied and integrated into fracture mechanics description of the TBC system failure. Experimental and analytical investigations revealed that the damage of the TBC cannot be uniquely characterized by the thickness of the thermal growth oxide layer (TGO) and is furthermore related to the chemical reactions around TGO as well as evolutions of residual stresses. The expansion of the TGO played a key role in the mechanical performance of TBC. It was confirmed that the residual stress evolution is linearly correlated with the rumpling surface length of the TGO layer. Failure of the TBC system was characterized by degradation of the TGO interface and increment of residual stresses. A life model was developed based on the concept of the fracture toughness depending on interface degradation and residual stress evolution.
机译:热阻挡涂层(TBC)在化学 - 热机械负载条件下工作,故障过程的特征在于复杂的铝迁移,氧化反应和环状热ME-Chanical降解。在本作工作中,研究了对等温和循环热暴露的EB-PVD TBC中的铝迁移,并集成到TBC系统故障的裂缝力学描述中。实验和分析研究表明,TBC的损伤不能唯一地表征热生长氧化物层(TGO)的厚度,并且还与TGO周围的化学反应以及残余应力的演变有关。 TGO的扩展在TBC的机械性能下发挥了关键作用。确认残余应力进化与TGO层的铆接表面长度线性相关。 TBC系统的故障的特征在于TGO接口的降解和残余应力的增量。根据界面降解和残余应力演化,基于裂缝韧性的概念开发了寿命模型。

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