首页> 外文期刊>Journal of the European Ceramic Society >Evolution of porosity in suspension thermal sprayed YSZ thermal barrier coatings through neutron scattering and image analysis techniques
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Evolution of porosity in suspension thermal sprayed YSZ thermal barrier coatings through neutron scattering and image analysis techniques

机译:通过中子散射和图像分析技术在悬架热喷涂YSZ热阻挡涂层中孔隙率的演变

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摘要

Porosity is a key parameter on thermal barrier coatings, directly influencing thermal conductivity and strain tolerance. Suspension high velocity oxy-fuel (SHVOF) thermal spraying enables the use of sub-micron particles, increasing control over porosity and introducing nano-sized pores. Neutron scattering is capable of studying porosity with radii between 1 nm and 10 mu m, thanks to the combination of small-angle and ultra-small-angle neutron scattering. Image analysis allows for the study of porosity with radii above -100 nm. For the first time in SHVOF 8YSZ, pore size distribution, total porosity and pore morphology were studied to determine the effects of heat treatment. X-ray diffraction and micro-hardness measurements were performed to study the phase transformation, and its effects on the mechanical properties. The results show an abundant presence of nanopores in the as-sprayed coatings, which are eliminated after heat treatment at 1100 degrees C; a transition from inter-splat lamellar to globular pores and the appearance of micro-cracks along with the accumulation of microstrains associated with the phase transformation at 1200 degrees C.
机译:孔隙率是热障涂层的关键参数,直接影响热导率和应变容限。悬浮式高速氧燃料(SHVOF)热喷涂可以使用亚微米颗粒,增加对孔隙率的控制,并引入纳米级孔隙。由于小角中子散射和超小角中子散射的结合,中子散射能够研究半径在1 nm到10μm之间的孔隙度。图像分析允许研究半径大于-100 nm的孔隙率。首次在SHVOF 8YSZ中研究了孔径分布、总孔隙率和孔形态,以确定热处理的影响。通过X射线衍射和显微硬度测量,研究了相变及其对力学性能的影响。结果表明,喷涂态涂层中存在大量纳米孔,这些纳米孔在1100℃热处理后被消除;在1200℃时,从片间层状孔向球状孔的转变,微裂纹的出现,以及与相变相关的微应变的累积。

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