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2O on the structure and viscosity in CaO-Al 2O 3-Li 2O-Ce 2O 3 melts]]>

机译: O 3 -I 2 O-CE 2 O 3 MELTS]]>

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摘要

AbstractWell understanding the role fluxing agents in the CaO-Al2O3-based slag system is essential to devise new mold fluxes for heat-resistant steel as well as for further improvement of data for viscosities and structure properties of the molten fluxes. The role of Li2O in CaO-Al2O3-Li2O-Ce2O3slag system was investigated through measuring viscosity combined with the FTIR spectra analysis. It was noted that Li2O show obvious effect of decreasing viscosity in the CaO-Al2O3-based slag system. The viscosity of the CaO-Al2O3-Li2O-Ce2O3slag melts decreased with increasing Li2O content. The relationship between the viscosity and the slag structure was discussed. Under the condition of increasing Li2O addition from 10 to 14mass%, the relative ratio of [AlO4]-tetrahedrons and [AlO6]-octahedrons remain constant. The O2–dissociated from Li2O just cut the network formed by [AlO4]-tetrahedrons. The depolymerization of [AlO4]-tetrahedrons from Q4units to Q3and Q2units was the main reason of the decrease of the viscosity. When the content of Li2O increased from 14 to 18mass%, more and more O2–dissociated from Li2O reacted with [AlO4]-tetrahedrons to form [AlO6]-octahedrons. The decrease of viscosity was mainly induced by the increase of free oxygen and the formation of [AlO6]-octahedrons, which acts as a network modifier.Highlights?Li2O show more pronounced effect on decreasing viscosity at a lower temperature, and increasing Li2O content can decrease the decreasing rate of viscosities.?Increasing Li2O addition from 10 to 14 mass%, the O2-dissociated from Li2O just cut the network formed by [AlO4]-tetrahedrons.?More O2-ions dissociated from Li2O, and more [AlO6]-octahedrons formed when the content of Li2O exceeded 14 mass%.]]>
机译:<![cdata [ 抽象 良好了解Cao-Al 2 < / CE:INF> O 3 基础的渣系统对于设计用于耐热钢的新型模具通量至关重要,以及进一步改善粘度的数据熔融助熔剂的结构性质。李 2 o在cao-al 2 o 3 -LI 2 O-CE 2 O 3 渣系统通过测量粘度与FTIR光谱分析相结合。有人指出,李 2 o表现出显而易见的粘度在Cao-al 2 O 3 基于SLAG系统。 CaO-Al 2 O 3 -LI 2 O-CE 2 O 3 渣随着Li 2 O内容,熔体随着升高而减少。讨论了粘度与炉渣结构之间的关系。在增加的条件下,Li 2 O添加到10到14mass%,[Alo 4 ] - 四面体和[ALO 6 ] - OCTAKEDRONS保持不变。 O 2 - 来自LI 2 O只是切割由[ALO < CE:INF LOC =“POST”> 4 ] - 四面体。 [ALO 4 ] - 来自Q 4 单位到Q 单位的TETHEDRONS sup =“post”> 3 和q 2 单位是粘度降低的主要原因。当Li 2> 2 O从14增加到18mass%,越来越多的O 2 - 与Li 2 O与[ALO 4 ] - TETHEDRONS形成[ ALO 6 ] - OCTAKEDRONS。粘度的降低主要是通过自由氧的增加和形成[Alo 6 “ - 八面体,其作为网络调节剂。 突出显示 li 2”> 2> 2:INF> O显示出更明显的粘度在较低温度下降低,而且增加Li 2 O含量可以降低降低速率粘度。 增加Li 2 O ADDITI从10到14质量%,O 2 - 解离LI 2 o切割由[alo 4 ] - tetrahedrons。 更多O 2 - 从Li O,以及更多[ALO 6 ] - 八面体形成li 2 o超过14质量%的内容。 ]]>

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