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首页> 外文期刊>Materials Letters >Correlation of thermal conductivity of suspension plasma sprayed yttria stabilized zirconia coatings with some microstructural effects
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Correlation of thermal conductivity of suspension plasma sprayed yttria stabilized zirconia coatings with some microstructural effects

机译:悬浮等离子喷涂氧化钇稳定的氧化锆涂层的热导率与微观结构的相关性

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摘要

Yttria-stabilized zirconia (3YSZ) coatings were successfully obtained by suspension plasma spraying. The coatings present generally two-zones-microstructure comprising nanostructured zones contributed by unmolten, partially sintered nanoparticles surrounded by lamellar splats formed from molten and agglomerated in-flight fine solids. In addition, different types of cracks inside the coating microstructure were classified and quantified by image analysis such as e.g. inner microcracks and segmentation cracks associated with quenching process as well as horizontal interlamellar cracks. Thermophysical properties of sprayed coatings were tested with a thermal diffusivity set up basing onto light flash principle. Subsequently, the thermal conductivity was determined with the use of literature data of density and specific heat. The calculations showed very low thermal conductivities values. The values did not correlate with coatings porosity data. Consequently, the analysis of variance (ANOVA) test allowed evaluating the possible impact of the various types of cracks on thermal conductivity. By this analysis, a good correlation between vertical cracks, which include microcracks and segmentation cracks, and thermal conductivity was found. The findings also confirmed the increase of thermal conductivity associated with this type of cracks.
机译:通过悬浮等离子喷涂成功获得了氧化钇稳定的氧化锆(3YSZ)涂层。涂层通常具有两区微结构,其包括由未熔融的,部分烧结的纳米颗粒,被熔融的和团聚的飞行中的细固体形成的层状片包围的纳米结构区。另外,通过图像分析,例如,涂层微观结构内部的不同类型的裂纹被分类和量化。与淬火过程相关的内部微裂纹和分段裂纹,以及水平的层间裂纹。通过基于闪光原理的热扩散率测试喷涂涂层的热物理性质。随后,利用密度和比热的文献数据确定热导率。计算显示非常低的热导率值。该值与涂层孔隙率数据不相关。因此,方差分析(ANOVA)测试允许评估各种类型的裂纹对热导率的可能影响。通过该分析,发现垂直裂纹(包括微裂纹和分段裂纹)与导热系数之间具有良好的相关性。这些发现还证实了与此类裂纹相关的导热系数的增加。

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  • 来源
    《Materials Letters》 |2013年第15期|370-373|共4页
  • 作者单位

    Instituto de Tecnologia Ceramica (ITC), Universitat Jaume I, Campus Universitario Riu Sec. Av. Sos Baynat s, 12006, Castellon. Spain;

    Science des Procedes Ceramiques et de Traitements de Surface (SPCTS, UMR CNRS 7315), Universite de Limoges, Limoges, France;

    Science des Procedes Ceramiques et de Traitements de Surface (SPCTS, UMR CNRS 7315), Universite de Limoges, Limoges, France;

    Science des Procedes Ceramiques et de Traitements de Surface (SPCTS, UMR CNRS 7315), Universite de Limoges, Limoges, France;

    Instituto de Tecnologia de Materiales (ITM), Universidad Politecnica de Valencia, Valencia, Spain;

    Instituto de Tecnologia de Materiales (ITM), Universidad Politecnica de Valencia, Valencia, Spain;

    Instituto de Tecnologia Ceramica (ITC), Universitat Jaume I, Castellon, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Thermal barrier coatings; Suspension plasma spraying; Thermal conductivity; Coating microstructure;

    机译:隔热涂层;悬浮等离子喷涂;导热系数;涂层微观结构;

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