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THERMAL RESIDUAL STRESS IN ENVIRONMENTAL BARRIER COATED SILICON NITRIDE-MODELED

机译:环境屏障涂覆氮化硅模型中的热残余应力

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To determine the maximum residual stresses developed during deposition of the coatings on ceramic substrate, a finite element model (FEM) was developed. Using this model, the thermal residual stresses were predicted in silicon nitride substrates coated with three environmental coating systems namely barium strontium aluminum silicate (BSAS), rare earth mono silicate (REMS) and earth mono di-silicate (REDS). A parametric study was also conducted to determine the influence of coating layer thickness and material properties on thermal residual stress. Results indicate that z-direction stresses in all three systems are small and negligible, but maximum in-plane stresses can be significant depending on the composition of the constituent layer and the distance from the substrate. The BSAS and REDS systems show much lower thermal residual stresses than REMS system. Parametric analysis indicates that in each system, the thermal residual stresses can be decreased with decreasing the modulus and thickness of the coating.
机译:为了确定在陶瓷基板上沉积涂层期间显影的最大残余应力,开发了有限元模型(FEM)。使用该模型,在涂有三种环境涂料系统的氮化硅基材中预测了热残余应力即钡锶铝硅酸钡(BSA),稀土单硅酸盐(REMS)和地球二硅酸盐(红色)。还进行了参数研究以确定涂层厚度和材料特性对热残余应力的影响。结果表明,所有三种系统中的Z方向应力小且可忽略不计,但是根据构成层的组成和距基材的距离,最大面内应力可以显着。 BSA和REDS系统比REMS系统显示出远低的热残余应力。参数分析表明,在每个系统中,通过降低涂层的模量和厚度,可以降低热残余应力。

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