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Environmental Barrier Coating (EBC) Durability Modeling; An Overview and Preliminary Analysis

机译:环境屏障涂料(EBC)耐久性建模;概述和初步分析

摘要

A study outlining a fracture mechanics based model that is being developed to investigate crack growth and spallation of environmental barrier coating (EBC) under thermal cycling conditions is presented. A description of the current plan and a model to estimate thermal residual stresses in the coating and preliminary fracture mechanics concepts for studying crack growth in the coating are also discussed. A road map for modeling life and durability of the EBC and the results of FEA model(s) developed for predicting thermal residual stresses and the cracking behavior of the coating are generated and described. Further initial assessment and preliminary results showed that developing a comprehensive EBC life prediction model incorporating EBC cracking, degradation and spalling mechanism under stress and temperature gradients typically seen in turbine components is difficult. This is basically due to mismatch in thermal expansion difference between sub-layers of EBC as well as between EBC and substrate, diffusion of moisture and oxygen though the coating, and densification of the coating during operating conditions as well as due to foreign object damage, the EBC can also crack and spall from the substrate causing oxidation and recession and reducing the design life of the EBC coated substrate.
机译:提出了一项概述基于断裂力学的模型的研究,该模型正在研究中,以研究热循环条件下环境屏障涂层(EBC)的裂纹扩展和剥落。还讨论了当前计划的描述和估计涂层中的热残余应力的模型,以及用于研究涂层中裂纹扩展的初步断裂力学概念。生成并描述了对EBC的寿命和耐久性进行建模的路线图,以及为预测热残余应力和涂层的开裂行为而开发的FEA模型的结果。进一步的初步评估和初步结果表明,要开发一种综合的EBC寿命预测模型是很困难的,该模型结合了通常在涡轮机部件中出现的应力和温度梯度下的EBC破裂,降解和剥落机理。这主要是由于EBC子层之间以及EBC与基材之间的热膨胀差异不匹配,水分和氧气通过涂层的扩散以及操作条件下涂层的致密化以及异物损坏造成的, EBC还会从基材开裂和剥落,从而导致氧化和凹陷,并缩短EBC涂层基材的设计寿命。

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