Nanophase partially stabilized zirconia intermediate layer for strain accommodation in a multi-layer thermal barrier coating

被引:0
|
作者
Guru, DN [1 ]
Palacio, M [1 ]
Mook, W [1 ]
Chambers, M [1 ]
Heberlein, J [1 ]
Gerberich, W [1 ]
Racek, O [1 ]
Berndt, CC [1 ]
机构
[1] Univ Minnesota, Minneapolis, MN 55455 USA
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中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Applying an environmental barrier coating (EBC) and a thermal barrier coating (TBC) on the next generation gas turbine structural materials such as silicon carbide matrix composites will lead to large stresses due to thermal expansion mismatch; thereby limiting the coating's effectiveness and lifetime. Nanostructured materials possess a large volume fraction of grain boundaries and are conjectured to partially relieve the strain in the coating structure. A Triple Torch Plasma Reactor (TTPR) was used to spray multi-layered TBCs consisting of a mullite EBC deposited either on a silicon carbide or a mullite substrate, a nano-phase partially stabilized zirconia coating (nPSZ), and a yttria stabilized zirconia coating (YSZ) as the TBC. The nanostructure of the n-PSZ could be maintained during the deposition process. The coatings were heat treated at 1300 degrees C and the change in microstructure and mechanical properties were analyzed using scanning electron microscopy (SEM), micro-indentation and scratch testing applied to the coating cross section. While a change in the microstructure was observed, in particular grain growth, the hardness and elastic modulus appeared to be little affected by the heat treatment giving a preliminary validation of the multilayer concept.
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页码:861 / 865
页数:5
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