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The effect of a high thermal gradient on sintering and stiffening in the top coat of a thermal barrier coating (TBC) system

机译:高热梯度对热障涂层(TBC)系统顶涂层中的烧结和硬化的影响

摘要

Superalloy substrates coated with plasma-sprayed CoNiCrAlY bond coats and yttria-stabilized zirconia top coats (TCs) have been subjected to a high heat flux under a controlled atmosphere. The sintering exhibited by the TC under these conditions has been studied and compared with the behavior observed during isothermal heating. Sintering has been characterized by (a) microstructural examinations, (b) dilatometry, in both the in-plane and through-thickness directions, and (c) stiffness measurements, using both cantilever bending and nanoindentation. A numerical model has been used to explore the stress state under isothermal and thermal gradient conditions. Dilatometry data indicate significant linear contractions during holding at elevated temperatures, particularly in the through-thickness direction. This is largely attributed to microstructural changes associated with sintering, with any volume changes due to phase transformations making relatively small contributions. Sintering proceeds faster at higher temperatures but is retarded by the presence of tensile stresses (from differential thermal expansion between the coating and substrate) within the TC. Thus, it occurs preferentially near the free surface of the TC under gradient conditions, not only due to the higher temperature, but also because the in-plane stress is more compressive in that region.
机译:涂有等离子喷涂CoNiCrAlY粘结涂层和氧化钇稳定的氧化锆外涂层(TC)的高温合金基材在受控气氛下经受了高热通量。已经研究了TC在这些条件下表现出的烧结现象,并将其与等温加热过程中观察到的行为进行了比较。烧结的特点是:(a)微观结构检查;(b)沿平面内和厚度方向的膨胀;以及(c)使用悬臂弯曲和纳米压痕的刚度测量。数值模型已被用于探索等温和热梯度条件下的应力状态。膨胀计数据表明,在高温下保持期间,特别是在整个厚度方向上,存在明显的线性收缩。这主要归因于与烧结相关的微观结构变化,由于相变引起的任何体积变化均贡献相对较小。烧结在较高温度下进行得更快,但由于TC中存在张应力(由于涂层和基材之间的热膨胀差异)而受到阻碍。因此,它不仅在较高温度下而且在梯度条件下优先出现在TC的自由表面附近,这不仅是因为较高的温度,而且还因为平面内应力在该区域更具压缩性。

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