首页> 外文会议>TMS Annual Meeting Exhibition >FROM PHASE EQUILIBRIUM AND THERMODYNAMIC MODELING TO FREEZE LININGS - THE DEVELOPMENT OF TECHNIQUES FOR THE ANALYSIS OF COMPLEX SLAG SYSTEMS
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FROM PHASE EQUILIBRIUM AND THERMODYNAMIC MODELING TO FREEZE LININGS - THE DEVELOPMENT OF TECHNIQUES FOR THE ANALYSIS OF COMPLEX SLAG SYSTEMS

机译:从相平衡和热力学建模到冻结衬里 - 复杂渣系统分析技术的发展

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Modem analytical tools, such as electron probe X-ray microanalysis (EPMA), are used in experimental characterization of phase equilibria and microstructures of complex slags. Integrated thermodynamic computer packages, such as FactSage, are used to provide more accurate descriptions of complex slag systems. These advanced methodologies have been applied to characterize dynamic steady state freeze linings in slag systems using submerged cold finger probes at controlled laboratory conditions, establishing the effects of bath chemistry, temperature, heat extraction rate and bulk fluid flow. It has been found that stationary freeze lining deposit interface temperatures at steady state conditions can be lower than the bulk slag liquidus temperature, and that stable operation below the liquidus is possible. A conceptual framework has been developed to explain the phenomenon and the range of interface temperatures that can be obtained in dynamic steady state conditions. These findings have important implications for the design of freeze linings and possible improvements to high-temperature metallurgical operations.
机译:调制解调器分析工具,例如电子探针X射线微基分析(EPMA),用于实验表征相平衡和复合渣的微观结构。集成的热力学计算机封装,如事件,用于提供更准确的复杂渣系统的描述。这些先进的方法已经应用于在受控实验室条件下使用浸没式冷手指探针在渣系统中表征动态稳态冷冻衬里,建立浴化学,温度,热提取率和大量流体流动的影响。已经发现,稳态条件下的静止冻结衬里沉积界面温度可以低于散装渣液温度,并且可以在液体以下稳定的操作。已经开发了一种概念框架来解释可以在动态稳态条件下获得的现象和界面温度范围。这些发现对冻结衬有的设计和对高温冶金操作的可能改进具有重要意义。

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