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Local stress around cap-like portions of anisotropically and nonuniformly grown oxide layer in thermal barrier coating system

机译:热障涂层系统中各向异性和非均匀生长的氧化物层的帽状部分周围的局部应力

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摘要

The intrinsic deformation accompanying the growth of thermally grown oxide (TGO) can induce significant local stress potentially causing interfacial delamination and coatings fracture in a thermal barrier coating system (TBCs). Multiple mechanisms can be involved in a TGO growth process which is sensitive to the reactive elements contained in the coatings, and as a result anisotropic and nonuniform growth deformation can be produced in the TGO layer. The objective of this study is to analytically and numerically investigate the oxide-growth-induced local stress around the cap-like portions of a TGO layer having grown to a certain thickness and furthermore demonstrate the associated micro-crack patterns. A sphere model is proposed to analytically derive the elastic and elastic-plastic solutions of the stress field, which takes into account the anisotropy and nonuniformity of growth strain as well as the yielding of coating materials. On the other hand, finite element analysis is carried out to consider more realistic undulation morphology of the TGO layer and to verify the analytical prediction. It is seen that the through-thickness and lateral components of the anisotropic growth strain compete in the stress generation and there exist critical conditions for the dominance of different growth strains. The effect of growth strain gradient is examined to disclose the consequence of TGO dominant growth at the TGO/BC (bond coat) interface. The effects of the roughness and thickness of TGO and the plastic behaviour of different coating layers are also analysed. Finally, the possible micro-crack patterns due to TGO growth in typical TBC systems are illustrated with suggestions about how to reduce the driving force for the related structural failure.
机译:伴随热生长氧化物(TGO)的生长而发生的固有变形会引起明显的局部应力,从而潜在地导致界面分层和热障涂层系统(TBC)中的涂层破裂。 TGO生长过程可能涉及多种机制,该过程对涂层中所含的反应性元素敏感,因此,在TGO层中会产生各向异性和不均匀的生长变形。这项研究的目的是分析和数字研究已生长到一定厚度的TGO层帽状部分周围氧化物生长引起的局部应力,并进一步证明了相关的微裂纹模式。提出了一个球体模型,以分析得出应力场的弹性和弹塑性解,该模型考虑了生长应变的各向异性和非均匀性以及涂层材料的屈服。另一方面,进行有限元分析是为了考虑TGO层更真实的起伏形态并验证分析预测。可以看出,各向异性生长应变的贯穿厚度和横向分量在应力产生中竞争,并且对于不同生长应变的优势存在关键条件。检查了生长应变梯度的影响,以揭示TGO / BC(粘结层)界面处TGO主导生长的结果。还分析了TGO的粗糙度和厚度以及不同涂层的塑性行为的影响。最后,通过典型的TBC系统中的TGO增长,给出了可能的微裂纹模式,并提出了有关如何降低相关结构破坏的驱动力的建议。

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