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Effective Thermal Conductivity of Soda-Lime Silicate Glassmelts with Different Iron Contents Between 1100℃ and 1500℃

机译:不同铁含量的1100℃至1500℃的钠钙硅酸盐玻璃熔体的有效导热系数

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摘要

This study presents a simple method for retrieving the effective thermal conductivity of semitransparent glassmelts from measured temperature profiles. Effective thermal conductivity of molten glass at high temperature is an important thermophysi-cal property that affects the glassmelting and forming processes and thus the quality of the final glass products. In semitransparent glassmelts, heat is transferred by both conduction and radiation. In the limiting case of optically thick glassmelts, typically featuring high iron content, thermal radiation can be treated as a diffusion process. The total heat flux can be expressed as the sum of a phononic and a radiative heat fluxes based on Fourier's law. For weakly absorbing glassmelts, the temperature profile may be strongly nonlinear particularly neat container walls due to the contribution from emission and absorption. Steady-state measurement techniques, such as the linear heat flux method, have been developed to measure glassmelt effective thermal conductivity at high temperatures. However, they typically use only three temperatures measurements and assume linear temperature profile in the glassmelt. The new retrieval method addresses these drawbacks particularly for weakly absorbing glassmelts featuring nonlinear temperature profiles. It is demonstrated with experimental data collected for soda-lime silicate glasses with iron content ranging from 0.008 to 1.1 wt% and temperatures between 1100℃ and 1550℃.
机译:这项研究提出了一种从测得的温度曲线中检索半透明玻璃熔体的有效导热系数的简单方法。熔融玻璃在高温下的有效导热率是重要的热物理性质,它影响玻璃的熔融和成型过程,从而影响最终玻璃产品的质量。在半透明玻璃熔体中,热量通过传导和辐射传递。在光学厚度较厚的玻璃熔体(通常具有高铁含量)的极限情况下,可以将热辐射视为扩散过程。可以根据傅立叶定律将总热通量表示为声子和辐射热通量之和。对于吸收较弱的玻璃熔体,由于发射和吸收的影响,温度曲线可能是强烈非线性的,尤其是整洁的容器壁。已经开发了诸如线性热通量法的稳态测量技术来测量高温下玻璃熔体的有效导热率。但是,他们通常仅使用三个温度测量值,并假设玻璃熔体中呈线性温度分布。新的检索方法解决了这些缺点,特别是对于具有非线性温度曲线的弱吸收玻璃熔体。所收集的实验数据证明了铁含量为0.008至1.1 wt%,温度为1100℃至1550℃的钠钙硅酸盐玻璃。

著录项

  • 来源
    《Journal of the American Ceramic Society》 |2014年第2期|442-450|共9页
  • 作者单位

    Mechanical and Aerospace Engineering Department, University of California, Los Angeles 420 Westwood Plaza, Los Angeles, California 90095-1597;

    Glass Service, Inc., Rokytnice 60, Vsetin CZ-755 01, Czech Republic;

    Asahi Glass Corporation, Ltd, Production Technology Center, 1-1 Suehirocho, Tsurumi-ku, Yokohama-shi, Kanagawa 230-0045, Japan;

  • 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
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