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Reaction chemistry and thermochemistry of magnesia-graphite systems containing antioxidants.

机译:含抗氧化剂的氧化镁-石墨体系的反应化学和热化学。

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摘要

Reaction chemistry and thermochemistry of magnesia-graphite refractory systems containing antioxidants are presented in the form of five different studies. Thermodynamic data for systems Mg-O, Al-O, Si-O, Mg-Al-O, Mg-Si-O, Mg-O-C, Al-O-C, Si-O-C, Mg-Al-O-C and Mg-Si-O-C are presented in the form of volatility diagrams which provide an efficient way to view systems in which non-condensed phases are of paramount importance, as is the case in magnesia-graphite systems. A review of the current literature on the addition of antioxidants to magnesia-graphite brick is presented. The antioxidants considered include Al-metal, Si-metal, Mg-metal, alloys, Mo-metal, ZrB{dollar}sb2{dollar}, Zr-metal, Ti-metal and SiC. Two mechanisms are presented for the formation of a dense magnesia layer, at the hot face of a refractory lining and both arise from a fairly straightforward thermochemical argument. Thermodynamic calculations based on Al{dollar}sb{lcub}rm (l){rcub}{dollar} and Al{dollar}sb4{dollar}C{dollar}sb{lcub}rm 3(s){rcub}{dollar} stability provide a reasonable estimate of the prevailing internal oxygen partial pressure gradient. The values presented are much lower than those typically cited in literature. A new technique has been developed which adequately simulates the temperature and partial pressure gradient that linings are subjected to during service. Results for magnesia-graphite-aluminum and magnesium-graphite-silicon brick are presented and related to the wear resistance of these linings.
机译:以五种不同的研究形式介绍了含抗氧化剂的氧化镁-石墨耐火体系的反应化学和热化学。 Mg-O,Al-O,Si-O,Mg-Al-O,Mg-Si-O,Mg-OC,Al-OC,Si-OC,Mg-Al-OC和Mg-Si-系统的热力学数据OC以挥发度图的形式呈现,这提供了一种查看系统的有效方法,在该系统中,非凝结相至关重要(如氧化镁-石墨系统中的情况)。介绍了有关在氧化镁石墨砖中添加抗氧化剂的最新文献。考虑的抗氧化剂包括铝金属,硅金属,镁金属,合金,钼金属,ZrB {美元} sb2 {美元},Zr金属,钛金属和SiC。在耐火衬里的热面上,提出了两种形成致密氧化镁层的机理,这两种机理均来自于相当简单的热化学论证。基于Al {dollar} sb {lcub} rm(l){rcub} {dollar}和Al {dollar} sb4 {dollar} C {dollar} sb {lcub} rm 3(s){rcub} {dollar}的热力学计算稳定性提供了对主要内部氧气分压梯度的合理估计。给出的值远低于文献中通常引用的值。已经开发出一种新技术,该技术可以充分模拟衬砌在使用过程中所经受的温度和分压梯度。给出了镁-石墨-铝和镁-石墨-硅砖的结果,并与这些衬里的耐磨性有关。

著录项

  • 作者

    Smith, Jeffrey Douglas.;

  • 作者单位

    University of Missouri - Rolla.;

  • 授予单位 University of Missouri - Rolla.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

  • 入库时间 2022-08-17 11:50:07

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