首页> 外文期刊>Journal of Thermal Spray Technology >Influence of Topcoat-Bondcoat Interface Roughness on Stresses and Lifetime in Thermal Barrier Coatings
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Influence of Topcoat-Bondcoat Interface Roughness on Stresses and Lifetime in Thermal Barrier Coatings

机译:面漆-粘结层界面粗糙度对热障涂层应力和寿命的影响

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摘要

Failure in Atmospheric Plasma-Sprayed (APS) thermal barrier coatings (TBCs) is associated with the thermo-mechanical stresses developing due to the thermally grown oxide (TGO) layer growth and thermal expansion mismatch during thermal cycling. The interface roughness has been shown to play a major role in the development of these induced stresses and lifetime of TBCs. Modeling has been shown as an effective tool to understand the effect of interface roughness on induced stresses. In the previous work done by our research group, it was observed that APS bondcoats performed better than the bondcoats sprayed with High Velocity Oxy-Fuel process which is contrary to the present literature data. The objective of this work was to understand this observed difference in lifetime with the help of finite element modeling by using real surface topographies. Different TGO layer thicknesses were evaluated. The modeling results were also compared with existing theories established on simplified sinusoidal profiles published in earlier works. It was shown that modeling can be used as an effective tool to understand the stress behavior in TBCs with different roughness profiles.
机译:大气等离子喷涂(APS)热障涂层(TBC)的故障与热机械应力有关,这是由于热循环过程中热生长的氧化物(TGO)层的生长和热膨胀失配引起的。界面粗糙度已被证明在这些诱导的应力和TBC的寿命中起主要作用。建模已被证明是了解界面粗糙度对感应应力影响的有效工具。在我们的研究小组先前所做的工作中,观察到APS粘结涂层的性能要优于用高速氧气-燃料工艺喷涂的粘结涂层,这与现有文献数据相反。这项工作的目的是通过使用真实的表面形貌,借助有限元建模来了解这种观察到的寿命差异。评价了不同的TGO层厚度。还将建模结果与在早期工作中发表的基于简化正弦曲线轮廓的现有理论进行了比较。结果表明,建模可以用作了解具有不同粗糙度轮廓的TBC中应力行为的有效工具。

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