首页> 外文会议>Journal of Thermal Spray Technology vol.15(4) December 2006 >Nanostructured Partially Stabilized Zirconia as an Interlayer in a Multi LayeredThermal Barrier Coating
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Nanostructured Partially Stabilized Zirconia as an Interlayer in a Multi LayeredThermal Barrier Coating

机译:纳米结构的部分稳定的氧化锆作为多层热障涂层的中间层

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Stresses developed within a thermal barrier coating (TBC) dueto the mismatch in thermal expansion of different coatingcomponents can cause coating failure. Nanostructuredmaterials have an increased volume fraction of grainboundaries and this microstructural attribute may allowcoatings to relieve the strain in the coating structure therebyimproving the effectiveness and the lifetime of the TBC. Multi– layered TBCs were prepared using two techniques;atmospheric pressure plasma spray (APS) using a commercialsystem, and reduced pressure plasma spray using the TripleTorch Plasma Reactor (TTPR). The coatings were depositedon mullite and on NiCrAlY-coated steel substrates, andconsisted of an inter – layer of nano-phase partially stabilizedzirconia (n – PSZ) and a layer of conventional partially yttriastabilized zirconia coating (c – YSZ) as the top thermal barriercoat. The coatings were heat treated at various temperaturesand the microstructural changes analyzed using scanningelectron microscopy (SEM) images. Mechanical properties ofthe coating were studied using four point bend testing to betterunderstand the effect of the n-PSZ inter-layer on the strainrelief mechanisms that may be operative within the TBC.
机译:由于热障涂层(TBC)的应力发生 在不同涂层的热膨胀中不匹配 组件可引起涂层失效。纳米结构 材料具有增加的晶粒体积分数 界限和该微结构属性可能允许 涂层以减轻涂层结构中的应变 提高TBC的有效性和寿命。多 - 使用两种技术制备分层的TBC; 使用商业的大气压等离子体喷雾(APS) 系统,降低压力等离子体喷雾三联 火炬等离子体反应器(TTPR)。涂层沉积 在莫来石和尼古拉德涂层钢基材上,和 由部分稳定的纳米阶段间组成 氧化锆(n - psz)和一层常规部分yttra 稳定的氧化锆涂层(C - YSZ)作为顶部热屏障 外套。在各种温度下涂层进行热处理 并且使用扫描分析的微观结构变化 电子显微镜(SEM)图像。机械性能 使用四点弯曲测试研究涂层以更好地研究 了解N-PSZ层间在应变中的效果 可以在TBC内操作的浮雕机制。

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