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Depth-Sensing Indentation Creep Behavior of Nanostructured Thermal Barrier Coatings from As-Synthesized t’-8YSZ Feedstocks

机译:刚合成的t’-8YSZ原料的纳米结构热障涂层的深度感应压痕蠕变行为

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摘要

Nano-indentation is a popular method to characterize the micromechanical properties of nanostructured 8YSZ coatings. However, little research has focused on the creep behavior of nano-indentation and only the elastic modulus and nanohardness have been analyzed. Herein, for the first time, the nano-indentation creep behavior of plasma-sprayed nanostructured 8YSZ coatings using as-prepared nanostructured non-transformable tetragonal (t’) feedstocks was investigated. The indentation creep behavior can be well characterized by the power-law equation and the strain rate sensitivity has been calculated in light of the equation. The strain rate sensitivity was sensitive to the load and the reasons were analyzed in detail. The current results can further guide and design thermal barrier coatings from the point of indentation creep property.
机译:纳米压痕是表征纳米结构8YSZ涂层的微机械性能的常用方法。然而,很少有研究集中在纳米压痕的蠕变行为上,仅分析了弹性模量和纳米硬度。本文中,首次研究了使用制备的纳米结构不可变形四方(t’)原料的等离子喷涂纳米结构8YSZ涂层的纳米压痕蠕变行为。压痕蠕变行为可以通过幂律方程很好地表征,并且已经根据方程计算了应变率敏感性。应变率敏感性对载荷敏感,并详细分析了原因。从压痕蠕变性能的角度来看,当前的结果可以进一步指导和设计热障涂层。

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