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梯度热障涂层的设计
引用本文:郭洪波,宫声凯,徐惠彬.梯度热障涂层的设计[J].航空学报,2002,23(5):467-472.
作者姓名:郭洪波  宫声凯  徐惠彬
作者单位:北京航空航天大学,材料科学与工程学院,北京,100083
基金项目:国家自然科学基金 (5 0 1710 0 3 )资助项目
摘    要: 采用电子束物理气相沉积方法 (EB PVD)制备了梯度热障涂层,其结构设计为NiCoCrAlY粘结层 /Al2O3 YSZ过渡层 /YSZ陶瓷层。YSZ陶瓷层的结构为柱状晶结构,Al2O3 YSZ梯度过渡层为梯度微孔结构。采用有限元方法对梯度热障涂层进行热应力分析,优化了Al2O3 YSZ梯度过渡层的组成。计算结果表明,梯度涂层的内应力显著降低,而且界面及其附近应力和应变变化较平缓。过渡层厚度的增加有利于降低涂层内应力和缓和涂层界面处的应力集中。

关 键 词:热障涂层  梯度涂层  电子束物理气相沉积  有限元  热传导  
文章编号:1000-6893(2002)05-0467-06
修稿时间:2002年1月17日

DESIGN OF GRADIENT THERMAL BARRIER COATINGS
GUO Hong bo,GONG Sheng kai,XU Hui bin.DESIGN OF GRADIENT THERMAL BARRIER COATINGS[J].Acta Aeronautica et Astronautica Sinica,2002,23(5):467-472.
Authors:GUO Hong bo  GONG Sheng kai  XU Hui bin
Institution:School of Materials Science and Engineering, Beijing Uiniversity of Aeronautics and Astronautics,Beijing 100083,China
Abstract:Gradient thermal barrier coatings(GTBCs) were prepared by co deposition of a tablet of mixtures of Al Al 2O 3 YSZ and YSZ onto NiCoCrAlY bond coat by means of electron beam physical vapor deposition (EB PVD).It was found that the microstructure gradually transferred from metallic bond coat to YSZ topcoat and the composition distribution changed continuously through the thickness of the coating.The coating exhibited a good resistance not only to high temperature oxidation but also to cyclic corrosion.A finite element method numerical model was employed to study the stresses that developed in the coating as cooling from a stress free state at high temperature.The results demonstrate that the Al 2O 3 YSZ graded layer in the GTBC provided a large reduction in the stress and stress gradient.Furthermore,the gradient layer is the crucial location that determines the lifetime of the gradient coating.Additionally.the Al 2O 3 YSZ coating exhibited a lower thermal conductivity than traditional YSZ coating,which was caused by the micro porous microstructure in the coating and the vacancies appearing in the ZrO 2 lattice.
Keywords:thermal barrier coatings (TBCs)  gradient coatings  electron beam physical vapor deposition (EB  PVD)  finite element  thermal conductivity
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