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Thermal transport properties of thermally sprayed coatings: An integrated study of materials, processing and microstructural effects.

机译:热喷涂涂层的热传递特性:对材料,加工和微结构效应的综合研究。

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摘要

The complex microstructures of thermally sprayed coatings are very sensitive to processing conditions and have a significant influence on the properties. The thermal transport property is a very important design parameter for thermally sprayed coatings. Despite considerable progress in this area, there is continued need to clarify the interrelationships among processing, microstructure and thermal transport properties. This has been enabled through continued advancements in processing science and control, enhancements in microstructural characterization and new methods of property characterization.;The purpose of this research is to seek a successive pathway to prior efforts in understanding the effect of microstructural defects on the thermal transport property of thermally sprayed coatings. Relationship between microstructure and thermal conductivity is investigated for three sets of plasma sprayed yttria stabilized zirconia (YSZ) coating systems made using different morphology powders, different particle size distribution and controlled modification of particle states via plasma torch parameters. By integrating the results, maps of the thermal conductivity-porosity relationship have been established. Such maps highlight the role of splat thickness and interfaces in thermal conductivity. Furthermore, a new microstructural parameter termed "effective porosity" is proposed which considers the dominating role of interlamellar pores on through thickness thermal transport in thermally sprayed coatings. This effective porosity is rationalized based on the heat transport mechanism and enables better understanding of microstructure-thermal transport property correlation. An inverse linear model and a percolation model are established which can serve as predictive tools for understanding microstructure-thermal conductivity relationships. In addition, a systematic assessment of thermal conductivity anisotropy has been carried out for YSZ, Al2O 3 and several metallic coatings. These results are analyzed from the point of view of modified percolation theory which considers the effect of anisotropic microstructural defects of sprayed coatings on the thermal transport property.;In the case of the ceramic coatings (YSZ, Al2O3), the temperature dependent thermal conductivity is also examined for various starting microstructures in collaboration with the Oak Ridge National Laboratory (ORNL). The decisive role of starting microstructure on temperature dependent thermal conductivity is presented. In addition, sintering effects resulting from thermal cycling and isothermal exposure on both room temperature and temperature dependent thermal conductivity have been carefully examined in an effort to assess the relationship to effective starting microstructure and provide quantitative information for life prediction.;This dissertation also extends to an investigation of thermal conductivity of metal and alloy thermal spray coatings. A range of metallic materials have been considered and the variation of thermal conductivity is interpreted from the point of view of intrinsic attributes (atomic structure, electronic structure and phase structure) as well as extrinsic effects (as a consequence of oxidation and defected microstructure). Finally, in order to achieve precise and reliable measurement of thermal transport property, the applicability and repeatability of both the laser and xenon flash techniques have been examined through the measurements on these coating systems: ceramics, semiconductors, metals, alloys and composites.
机译:热喷涂涂层的复杂微观结构对加工条件非常敏感,并且对性能有重大影响。对于热喷涂涂层,热传递性能是非常重要的设计参数。尽管在这一领域取得了长足的进步,但仍然需要澄清加工,微观结构和热传输性能之间的相互关系。这是由于加工科学和控制技术的不断进步,微结构表征的增强以及特性表征的新方法而实现的。本研究的目的是寻求一个连续的途径,以寻求先前的努力来理解微结构缺陷对热传递的影响。热喷涂涂层的性能。研究了三套使用不同形态粉末,不同粒径分布和通过等离子炬参数控制的粒子状态改性制成的等离子喷涂氧化钇稳定氧化锆(YSZ)涂层系统的微观结构与导热率之间的关系。通过积分结果,已经建立了导热率-孔隙率关系的图。这样的图突出了splat厚度和界面在导热性中的作用。此外,提出了一种新的称为“有效孔隙率”的微结构参数,该参数考虑了层间孔在热喷涂涂层中贯穿厚度的热传输中的主导作用。该有效孔隙率基于传热机理而合理化,可以更好地理解微观结构与传热特性的相关性。建立了反线性模型和渗流模型,可以作为理解微结构与导热系数关系的预测工具。此外,已经对YSZ,Al2O 3和几种金属涂层进行了热导率各向异性的系统评估。从改进的渗流理论的角度分析了这些结果,该理论考虑了喷涂涂层的各向异性微结构缺陷对热传输性能的影响。在陶瓷涂层(YSZ,Al2O3)的情况下,与温度有关的导热系数为还与橡树岭国家实验室(ORNL)合作检查了各种起始微结构。提出了起始微观结构对取决于温度的热导率的决定性作用。此外,还仔细研究了热循环和等温暴露对室温和与温度相关的热导率的烧结效应,以评估其与有效的起始微观结构的关系,并为寿命预测提供定量信息。研究金属和合金热喷涂涂层的导热性。已经考虑了多种金属材料,并且从固有属性(原子结构,电子结构和相结构)以及非本征效应(由于氧化和缺陷的微观结构)的角度解释了热导率的变化。最后,为了实现对热传输性能的精确和可靠的测量,通过对以下涂层系统(陶瓷,半导体,金属,合金和复合材料)的测量,研究了激光和氙气闪光技术的适用性和可重复性。

著录项

  • 作者

    Chi, Weiguang.;

  • 作者单位

    State University of New York at Stony Brook.;

  • 授予单位 State University of New York at Stony Brook.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 161 p.
  • 总页数 161
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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