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Influence of embedded MoSi2 particles on the high temperature thermal conductivity of SPS produced yttria-stabilised zirconia model thermal barrier coatings

机译:嵌入的MoSi2颗粒对SPS生产的氧化钇稳定的氧化锆模型热障涂层高温导热系数的影响

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摘要

To prolong the lifetime of thermal barrier coatings (TBCs) recently a new method of microcrack healing has been developed, which relies on damage initiated thermal decomposition of embedded molybdenum disilicide (MoSi2) particles within the TBC matrix. While these MoSi2 particles have a beneficial effect on the structural stability of the TBC, the high thermal conductivity of MoSi2 may have an unfavourable but as yet unquantified impact on the thermal conductivity of the TBCs.In this work the thermal conductivity of spark plasma sintering (SPS) produced yttria-stabilised zirconia (YSZ) model thermal barrier coatings containing 10 or 20 vol.% of MoSi2 healing particles was investigated using the laser flash method. Measurements were performed on free-standing composite material over a temperature range from room temperature up to 1000 °C. Microstructural analysis was carried out by SEM combined with image analysis to determine the size, distribution and area fraction of healing particles. The measurements were compared with the results from microstructure-based multi-physics finite element (FE) models and analytical models (the asymmetric Bruggeman model and the Nielsen model) in order to study the effects of the addition of MoSi2 particles as well as the presence of micro-pores on the apparent thermal conductivity. The results show a strongly non-linear increase in the thermal conductivity of the composite material with the MoSi2 volume fraction and a dependence on the aspect ratio of MoSi2 particles. Interparticle connectivity is shown to play a big role too.
机译:为了延长热障涂层(TBC)的寿命,最近开发了一种新的微裂纹修复方法,该方法依赖于在TBC基质中嵌入的二硅化钼(MoSi2)颗粒的损伤引发的热分解。尽管这些MoSi2颗粒对TBC的结构稳定性有有益的影响,但MoSi2的高导热性可能会对TBC的导热性产生不利但尚未量化的影响。使用激光闪光法研究了含有10或20%(体积)的MoSi2愈合颗粒的SPS制得的氧化钇稳定的氧化锆(YSZ)型热障涂层。在室温至最高1000°C的温度范围内对独立式复合材料进行测量。通过SEM结合图像分析进行微结构分析,以确定愈合颗粒的尺寸,分布和面积分数。将测量结果与基于微结构的多物理场有限元(FE)模型和分析模型(非对称Bruggeman模型和Nielsen模型)的结果进行比较,以研究添加MoSi2颗粒以及存在的影响孔对表观导热率的影响。结果表明,复合材料的热导率随MoSi2体积分数的增加而出现很大的非线性增加,并且与MoSi2颗粒的长径比有关。粒子间的连接性也显示出很大的作用。

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