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首页> 外文期刊>Journal of Materials Science >YTTRIA-STABILIZED HAFNIA-ZIRCONIA THERMAL BARRIER COATINGS - THE INFLUENCE OF HAFNIA ADDITION ON TBC STRUCTURE AND HIGH-TEMPERATURE BEHAVIOUR
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YTTRIA-STABILIZED HAFNIA-ZIRCONIA THERMAL BARRIER COATINGS - THE INFLUENCE OF HAFNIA ADDITION ON TBC STRUCTURE AND HIGH-TEMPERATURE BEHAVIOUR

机译:稳定的氧化HA-氧化锆热障涂层-氧化FN添加对TBC结构和高温性能的影响

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摘要

The search for more reliable and durable thermal barrier systems is a key factor for future aircraft turbine engines success. Hafnia is therefore an attractive ceramic component due to its similarity to zirconia and its elevated structural transformation temperatures. We report here structural and thermomechanical investigations of various plasma-sprayed coatings composed of ZrO2 + xmol% HfO2 (x=0, 25, 50 and 100), partially stabilized by 4.53 mol% yttria. X-ray diffraction studies show that, a metastable, non-transformable, high yttrium content, tetragonal solid solution is the only phase observed on the as-sprayed samples. This phase is crystallographically equivalent to the t' phase described for classical yttrium-partially stabilized zirconia (Y-PSZ) thermal barrier coatings (TBCs). Upon high-temperature annealing in air (T=1200 degrees C), however, the return of this t' phase to equilibrium differs from the classical t' --> t + c reaction. According to literature data, reactions of the type t' --> t + c + m should prevail at the highest hafnia contents (x greater than or equal to 50). Indeed, important quantities of monoclinic phase are accordingly being observed upon cooling. Thermal cycling of TBC samples in air has been performed at 1100 degrees C. The Young's modulus of the ceramic coating, which progressively increases when hafnia is substituted for zirconia, has a strong influence on TBC thermomechanical resistance. [References: 41]
机译:寻找更可靠,更耐用的热障系统是未来飞机涡轮发动机成功的关键因素。由于其与氧化锆的相似性和较高的结构转变温度,因此f是有吸引力的陶瓷组件。我们在这里报告由ZrO2 + xmol%的HfO2(x = 0、25、50和100)组成的各种等离子喷涂涂层的结构和热力学研究,该涂层部分由4.53 mol%氧化钇稳定。 X射线衍射研究表明,亚稳态,不可转化的高钇含量四方固溶体是在喷涂样品上观察到的唯一相。该相在晶体学上与传统的钇-部分稳定的氧化锆(Y-PSZ)热障涂层(TBC)所述的t'相等效。但是,在空气中高温退火(T = 1200摄氏度)时,此t'相返回平衡状态不同于经典的t'-> t + c反应。根据文献数据,在最高的氧化镁含量(x大于或等于50)时,应以t'-> t + c + m类型的反应为主。实际上,在冷却时相应地观察到大量的单斜相。 TBC样品在空气中的热循环已在1100摄氏度下进行。当用氧化f代替氧化锆时,陶瓷涂层的杨氏模量会逐渐增加,这对TBC热机械阻力有很大影响。 [参考:41]

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