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Comprehensive Numerical Simulation of Stress and Damage Fields under Thermo-Mechanical Loading for TBC-Coated Ni-Based Superalloy

机译:用于TBC涂层Ni基超合金热机械负载下应力和损伤场的综合数值模拟

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A finite element analysis code was developed to accurately predict stress and damage fields in thermal barrier coatings (TBCs) systems subjected to thermo-mechanical loadings. An inelastic constitutive equation for TBCs, and a Chaboche-type viscoplastic constitutive equation for Ni-based super alloys (IN738LC) were employed to simulate high temperature creep and cyclic deformation. Simulations of the TBC/IN738LC system subjected to two types of loading, namely, a triangle-wave loading and a GT-operation loading, were performed using the developed analysis code. The results confirmed that the stress and damage fields in the TBC/IN738LC system could be simulated accurately, and provided us with credible results regarding the crack occurrence. Additionally, the analysis under the GT-operation loading conditions revealed that a peak stress generated during the start-up operation would lead to delamination of the TBC, while a peak stress at the shut-down would lead to cracking in the substrate.
机译:开发了有限元分析代码,以准确地预测经受热机械载荷的热阻挡涂层(TBCS)系统中的应力和损伤场。用于TBCS的非弹性组成型方程,以及基于Ni的超合金(IN738LC)的Chaboche型粘塑料组成方程,以模拟高温蠕变和循环变形。使用开发的分析代码执行经过两种加载类型的TBC / IN738LC系统的模拟,即三角波加载和GT-操作负载。结果证实,TBC / IN738LC系统中的应力和损坏领域可以准确地模拟,并为我们提供了关于裂缝发生的可信结果。另外,在GT操作负载条件下的分析显示,在启动操作期间产生的峰值应力将导致TBC的分层,而关闭处的峰值应力将导致基板中的裂缝。

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