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Characterizing microstructure of refractory porous materials

机译:表征耐火多孔材料的微观结构

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摘要

Liquid Expulsion technique was used in this study to quantify the transport properties and microstructure of a refractory coating used in the Lost Foam Casting process. The pore size information obtained from the Liquid Expulsion Method is found to be well correlated with the transport properties of the porous coating material. For manufacturing process control, the viscosity of these coating slurries prior to its application on expanded polystyrene foam is often reduced by dilution with water and/or using a dispersant. In this paper, the effects of diluting or dispersing the slurry on the microstructure and transport properties of the dried refractory coatings are evaluated. Results show that the dilution and dispersion have opposing influences on the pore size and transport properties. Adding dispersant was found to reduce the transport properties of the refractory coatings significantly, potentially leading to defects in metal castings. The pore characterization technique developed in this paper is also used to determine the effects of drying methods (oven versus air dry) on the pore size and transport properties.
机译:在这项研究中,使用液体喷射技术来量化在消失泡沫铸造工艺中使用的耐火涂层的传输性能和微观结构。发现从液体排出法获得的孔径信息与多孔涂层材料的传输性能良好相关。为了控制生产过程,通常通过用水和/或使用分散剂稀释来降低这些涂料浆在施涂到膨胀聚苯乙烯泡沫上之前的粘度。在本文中,评估了稀释或分散浆料对干燥耐火涂层的微观结构和传输性能的影响。结果表明,稀释度和分散度对孔径和传输性能有相反的影响。发现添加分散剂会显着降低耐火涂层的传输性能,从而可能导致金属铸件中的缺陷。本文开发的孔表征技术还用于确定干燥方法(烤箱与空气干燥)对孔尺寸和传输性能的影响。

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  • 来源
    《Journal of Materials Science 》 |2006年第11期| 3403-3415| 共13页
  • 作者

    Xin Chen; Dayakar Penumadu;

  • 作者单位

    Civil and Environmental Engineering Department University of Tennessee;

    Civil and Environmental Engineering Department University of Tennessee;

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  • 原文格式 PDF
  • 正文语种 eng
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