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首页> 外文期刊>Journal of Thermal Spray Technology >Low Thermal Conductivity Yttrium Aluminum Garnet Thermal Barrier Coatings Made by the Solution Precursor Plasma Spray: Part I—Processing and Properties
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Low Thermal Conductivity Yttrium Aluminum Garnet Thermal Barrier Coatings Made by the Solution Precursor Plasma Spray: Part I—Processing and Properties

机译:低导热率钇铝石榴石热屏蔽涂层采用溶液前体等离子体喷雾:部分I-加工和性能

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摘要

Critical properties of TBCs include low thermal conductivity (TC) and high cyclic durability. In recent years, the solution precursor plasma spray (SPPS) process has been effectively used for deposition of TBCs with enhanced cyclic durability for yttria-stabilized zirconia (YSZ) and the higher temperature yttrium aluminum garnet (YAG) TBCs. Improvements in deposition efficiency (DE) and deposition rate (DR) were identified as needed for cost-effective commercialization. In this work, SPPS YAG TBCs with low TC and high DE and DR have been produced with microstructures containing a high density of planar arrays of increased porosity called inter-pass boundaries (IPBs). The IPBs have been shown to reduce the TC of SPPS YAG TBCs by 39% to a value of 0.58?W/mK at 1300?°C. Increasing the precursor feed rates and decreasing the raster scan step heights generate high-density IPB microstructures, while simultaneously increasing the DE and DR by 53 and 190%, respectively. The SPPS YAG microstructures with high-density IPBs also exhibit improved thermal cycling and sinter resistance compared to APS YSZ.
机译:TBC的关键性质包括低导热率(TC)和高循环耐久性。近年来,溶液前体等离子体喷雾(SPPS)方法已有效地用于沉积TBCS,以增强氧化钇稳定的氧化锆(YSZ)和较高温度的钇铝石榴石(YAG)TBC的循环耐久性。根据需要的经济高效商业化,确定沉积效率(DE)和沉积速率(DR)的提高。在这项工作中,具有低TC和高DE和DR的SPPS YAG TBCS,并且通过含有高密度的孔隙率的高密度的微结构产生称为跨越间边界(IPB)的微观结构。已显示IPBS将SPPS YAG TBC的TC减少39%至0.58Ω的值为1300°C。增加前体进料速率和降低光栅扫描步骤高度产生高密度IPB微结构,同时分别将DE和DR增加53和190%。与APS YSZ相比,具有高密度IPB的SPPS YAG微观结构也表现出改善的热循环和烧结电阻。

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