首页> 外文期刊>Journal of the European Ceramic Society >Optimizing substrate and intermediate layers geometry to reduce internal thermal stresses and prevent surface crack formation in 2-D multilayered ceramic coatings
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Optimizing substrate and intermediate layers geometry to reduce internal thermal stresses and prevent surface crack formation in 2-D multilayered ceramic coatings

机译:优化基材和中间层的几何形状,以减少内部热应力并防止在二维多层陶瓷涂层中形成表面裂纹

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摘要

In order to avoid the formation of normal cracks in the external layer of multilayered ceramic coatings during cooling, determination of the residual thermal stress field is essential. Concerning the effect of the intermediate layers (transition zone) on a possible reduction of stress in the external layer, it has been shown that in the case of a symmetrical (or constrained in-plane strain) system, reduction only occurs over a critical substrate thickness. In order to investigate the effect of the substrate geometry, the residual thermal stress field has also been determined in other configurations such as an asymmetrical arrangement (one side coating) allowing bending and a concentric-cylinder structure. In these last two configurations, a strong stress reduction is obtained. For practical applications such as gas turbine ceramic components, these results may provide guidelines for an optimum design of the geometry of substrate and intermediate layers of multilayered ceramic coatings.
机译:为了避免在冷却过程中多层陶瓷涂层外层中形成正常裂纹,必须确定残留的热应力场。关于中间层(过渡区)对可能降低外层应力的影响,已表明,在对称(或受约束的面内应变)系统的情况下,仅在关键基材上发生还原厚度。为了研究基板几何形状的影响,还已经在其他配置(例如允许弯曲的不对称排列(一侧涂层)和同心圆柱结构)中确定了残余热应力场。在这后两种配置中,可以大大降低应力。对于诸如燃气轮机陶瓷部件的实际应用,这些结果可为多层陶瓷涂层的基底和中间层的几何形状的最佳设计提供指导。

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