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Synthesis by sol-gel route and characterization of Yttria Stabilized Zirconia coatings for thermal barrier applications

机译:溶胶-凝胶法合成及用于热障应用的氧化钇稳定氧化锆涂层的表征

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This paper deals with the development of new synthesis techniques for functional materials such as Yttria Stabilized Zirconia (YSZ) used in the field of thermal barriers coatings. Currently, Thermal Barrier Coatings (TBCs) are manufactured by dry route technologies (EB-PVD or plasma spray) but such methods are directional and often require costly investments and complicated operations. We have carried out significant work aimed at developing sol-gel routes, which are nondirectional methods, to prepare, by suitable chemical modifications, nanocrystalline materials with a controlled morphology. The main advantage of this method is to decrease the crystallization temperature, much lower than the conventional processes, allowing the synthesis of reactive powders with nanometric particles size. In this paper, the formulation of an alkoxide sol has been optimized in order to obtain homogeneous YSZ films. Nature and quantity of binders have been studied. Superalloys have been then immersed in the sol and withdrawn at several controlled rates before being annealed at different temperatures. The films microstructures have been investigated using scanning electron microscopy. It appears that the combination of a slower withdrawal speed (17 cm/min) with a 3 wt.% content of DBP allows to obtain the most homogeneous and the thicker coatings. Moreover, SEM-FEG observations have shown that the deposit is present all over the rough surface of the substrate and is composed of two morphologies: a YSZ thin covering film and a thicker discontinuous layer duplicating the substrate topography. (c) 2006 Elsevier B.V. All rights reserved.
机译:本文探讨了用于热障涂层领域的功能材料(如氧化钇稳定的氧化锆(YSZ))的新合成技术的发展。当前,热障涂层(TBC)是通过干路线技术(EB-PVD或等离子喷涂)制造的,但是这种方法是定向的,通常需要昂贵的投资和复杂的操作。我们进行了旨在开发溶胶-凝胶途径的重大工作,这是非定向方法,旨在通过适当的化学修饰来制备具有可控形态的纳米晶体材料。该方法的主要优点是降低了结晶温度,远低于常规工艺,从而可以合成具有纳米粒度的反应性粉末。在本文中,对醇盐溶胶的配方进行了优化,以获得均匀的YSZ膜。已经研究了粘合剂的性质和数量。然后将高温合金浸入溶胶中,并以几种控制的速率取出,然后在不同温度下退火。使用扫描电子显微镜研究了膜的微观结构。看来,较慢的抽出速度(17cm / min)与3重量%的DBP含量相结合可以得到最均匀和最厚的涂层。此外,SEM-FEG观察表明,沉积物遍布基板的整个粗糙表面,并且由两种形态组成:YSZ薄覆盖膜和复制基板外形的较厚的不连续层。 (c)2006 Elsevier B.V.保留所有权利。

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