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Influence of microstructure on thermal and optical properties of suspension plasma sprayed (SPS) and atmospheric plasma sprayed (APS) coatings

机译:微观结构对悬浮等离子喷涂(SPS)和大气等离子喷涂(APS)涂层的热和光学性能的影响

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摘要

Normally the conventional thermal spray processes as the atmospheric plasma spraying (APS) have to use easily flowable powders in a size range between 10 and 100μm. In contrast the suspension plasma spraying (SPS) makes it possible to process nano sized particles directly. Due to the use of nano materials new microstructures and properties could be generated. One point is the possibility to influence the porosity level, its size range and micro crack densities in a wide band. Microstructure features like the porosity and cracks serve as scattering centres and lead to changes of optical properties. Furthermore the thermal conductivity is affected by the porosity level. In this work yttria partially stabilized zirconia coatings were generated by the SPS and APS process. The influence of the different microstructures on the thermal conductivity, the hemispherical reflectance and transmittance for wavelengths between 0.3 to 2.5μm has been investigated. Due to the higher porosity and crack level of the SPS coatings the thermal conductivity and hemispherical transmittance was significant reduced.
机译:通常,常规的热喷涂工艺(如大气等离子喷涂(APS))必须使用尺寸在10至100μm之间的易流动粉末。相比之下,悬浮等离子喷涂(SPS)使得直接处理纳米级颗粒成为可能。由于使用纳米材料,可以产生新的微观结构和性能。一点是可能影响孔隙率,其大小范围和宽带中的微裂纹密度。诸如孔隙率和裂缝之类的微观结构特征充当散射中心,并导致光学特性发生变化。此外,导热率受孔隙度的影响。在这项工作中,通过SPS和APS工艺生成了氧化钇部分稳定的氧化锆涂层。研究了不同微结构对波长在0.3至2.5μm之间的热导率,半球反射率和透射率的影响。由于SPS涂层具有较高的孔隙率和裂纹水平,因此热导率和半球形透射率显着降低。

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