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ENVIRONMENTAL BARRIER COATINGS HAVING A YSZ TOP COAT

机译:具有YSZ顶层的环境障碍涂层

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Environmental barrier coatings (EBCs) with a Si bond coat, a yttria-stabilized zirconia (YSZ) top coat, and various intermediate coats were investigated. EBCs were processed by atmospheric pressure plasma spraying. The EBC durability was determined by thermal cycling tests in water vapor at 1300°C and 1400°C, and in air at 1400°C and 1500°C. EBCs with a mullite (3Al_2O_3·2SiO_2)+BSAS (1-xBaO·xSrO·Al_2O_3·2SiO_2) intermediate coat were more durable than EBCs with a mullite intermediate coat, while EBCs with a mullite/BSAS duplex intermediate coat resulted in inferior durability. The improvement with a mullite+BSAS intermediate coat was attributed to enhanced compliance of the intermediate coat due to the addition of a low modulus BSAS second phase. Mullite+BSAS/YSZ and BSAS/YSZ interfaces produced a low melting (<1400°C) reaction product, which is expected to degrade the EBC performance by increasing the thermal conductivity. EBCs with a mullite+BSAS/graded mullite+YSZ intermediate coat showed the best durability among the EBCs investigated in this study. This improvement was attributed to diffused CTE mismatch stress and improved chemical stability due to the compositionally graded mullite+YSZ layer.
机译:研究了具有Si粘结涂层的环境阻隔涂层(EBCS),亚钇稳定的氧化锆(YSZ)顶层涂层和各种中间涂层。通过大气压等离子体喷涂加工EBC。通过在1300℃和1400℃的水蒸气中的热循环试验,在1400℃和1500℃的空气中通过热循环试验来确定EBC耐久性。用莫来石(3AL_2O_3·2SIO_2)+ BSAS(1-Xbao·Xsro·Al_2O_3·2SiO_2)中间涂层的EBCS比具有莫来石中间涂层更耐用的中间涂层,同时具有莫来石/ BSAS双工中间涂层的EBC导致较差的耐久性。用莫来石+ BSA中间涂层的改善归因于由于添加低模量BSA第二阶段而增强中间涂层的顺应性。莫来石+ BSAS / YSZ和BSAS / YSZ接口产生了低熔点(<1400℃)反应产物,预计通过增加导热率来降低EBC性能。用莫来石+ BSAS / DECULED MULLITE + YSZ中间涂层的EBCS在本研究中调查的EBCS中显示出最佳耐用性。这种改进归因于扩散的CTE失配应力和由于组合物分级莫来石+ YSZ层而改善的化学稳定性。

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