Eils Nadine K, Mechnich Peter, Keune Hartmut, Wahl Georg, Klages Claus-Peter
Deutsches Zentrum für Luft-und Raumfahrt e.V (DLR), Institut für Werkstoff-Forschung, Köln 51170, Germany.
J Nanosci Nanotechnol. 2011 Sep;11(9):8396-402. doi: 10.1166/jnn.2011.5081.
Oxide ceramic coatings in the system Y2O3-Al2O3-ZrO2 were fabricated in laboratory scale by using a MOCVD unit. A hot wall reactor was used along with different precursor feeding systems. Most experiments were carried out by using powder flash evaporation including a screw feeder for precursor powder delivery. For comparison, further samples were fabricated by using band flash evaporation and continuous evaporation from a crucible. Oxygen was used in all cases as reactant gas. Aluminium-tris-2,4-pentanedione (Al(acac)3), yttrium-tris-2,2,6,6-tetramethyl-3,5-heptanedione (Y(thd)3) and zirconium-tetrakis-2,2,6,6-tetramethyl-3,5-heptanedione (Zr(thd)4) were applied as metal-organic precursors because of their similar vaporization behaviour under the given conditions. The coating stoichiometry was varied from pure alumina to complex ternary compositions in the system Y2O3-Al2O3-ZrO2. Both kinds of ternary coatings fabricated by using flash evaporation methods show a nanolamellar microstructure in the as deposited state. Heat treating experiments at 1200 degrees C for up to 5 days enhance the lamellar character of the coating deposited by using powder flash evaporation. The lamellar microstructure is due to alternating YSZ enriched layers and YAG enriched layers in this state. However, the coating fabricated by using band flash evaporation shows a dense interpenetrating network of YSZ and YAG after heat treating instead of a lamellar microstructure observed in the as deposited state.
采用金属有机化学气相沉积(MOCVD)装置在实验室规模制备了Y2O3 - Al2O3 - ZrO2体系的氧化物陶瓷涂层。使用了热壁反应器以及不同的前驱体进料系统。大多数实验采用粉末闪蒸法进行,包括使用螺旋进料器输送前驱体粉末。为作比较,还通过带式闪蒸和从坩埚连续蒸发制备了其他样品。在所有情况下均使用氧气作为反应气体。由于在给定条件下它们具有相似的汽化行为,因此选用三 - 2,4 - 戊二酮铝(Al(acac)3)、三 - 2,2,6,6 - 四甲基 - 3,5 - 庚二酮钇(Y(thd)3)和四 - 2,2,6,6 - 四甲基 - 3,5 - 庚二酮锆(Zr(thd)4)作为金属有机前驱体。涂层化学计量比在Y2O3 - Al2O3 - ZrO2体系中从纯氧化铝变化到复杂的三元组成。采用闪蒸法制备的两种三元涂层在沉积态均呈现纳米层状微观结构。在1200℃下进行长达5天的热处理实验增强了采用粉末闪蒸法沉积的涂层的层状特征。在这种状态下,层状微观结构是由于交替的富YSZ层和富YAG层所致。然而,采用带式闪蒸法制备的涂层在热处理后呈现出YSZ和YAG的致密互穿网络,而不是在沉积态观察到的层状微观结构。