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首页> 外文期刊>Archives of Materials Science and Engineering >Influence of CaO content on viscosity of molten CaO-Al_2O_3-SiO_2 system
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Influence of CaO content on viscosity of molten CaO-Al_2O_3-SiO_2 system

机译:CaO含量对CaO-Al_2O_3-SiO_2熔融体系粘度的影响

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Purpose: The objective of this work is experimental determination of temperature dependences of viscosity of the molten CaO-Al_20_3-SiO_2 system and assessment of impact of CaO on the viscosity of this system.Design/methodology/approach: The ternary oxide system CaO-Al_20_3-SiO_2, which represents a simplified basis of the casting powder, was chosen for the experiment. Dependencies of viscosity on the concentration of CaO and on the temperature were determined experimentally. For this purpose were prepared a concentration series with additions of 3, 6, 9, 12 and 15 wt.% of calcium oxide. Experimental measurements of viscosity was performed with use of the high-temperature viscometer Anton Paar FRS 1600. Findings: Viscosity of the studied systems decreases exponentially with the increasing temperature. Viscosity decreases with the increasing addition of CaO. Viscosity reaches its minimum value of 0.447 Pa.s (at T = 1723 K) at the basicity of CaO/SiO_2 = 1.13. Viscosity increases with the further addition of CaO (CaO/SiO_2 > 1.2). Influence of addition of CaO is more pronounced at higher temperatures. Research limitations/implications: Viscosity in molten oxide system is determined by the internal structure. Exact clarification of the change of structure of the oxide system caused by the increased content of CaO requires additional analyses, such as Fourier transformation infrared spectra and Raman spectra.Practical implications: The choice of an optimum slag mode influences not only the main metallurgical processes, but also the values of technical-economic indicators of the whole steelmaking process. Viscosity is an important factor affecting the service properties of slags, as it plays an important role in the area of mass transfer at chemical reactions in metallurgical processes. Originality/value: The viscosities of CaO-Al_2O_3-SiO_2 system were measured under conditions of CaO/SiO_2 = 0.78-1.44, 47.20-35.98 wt.% SiO_2, 36.90-51.90 wt.% CaO and 15.90-12.12 wt.% Al_20_3.
机译:目的:这项工作的目的是通过实验确定熔融的CaO-Al_20_3-SiO_2系统的粘度与温度的关系,并评估CaO对该系统的粘度的影响。设计/方法/方法:三元氧化物系统CaO-Al_20_3实验中选择了代表铸粉简化基础的-SiO_2。通过实验确定粘度对CaO浓度和温度的依赖性。为此,制备了浓度系列,其中添加了3、6、9、12和15重量%的氧化钙。使用高温粘度计Anton Paar FRS 1600进行粘度的实验测量。结果:研究的系统的粘度随温度的升高呈指数下降。粘度随CaO添加量的增加而降低。在CaO / SiO_2 = 1.13的碱性下,粘度达到其最小值0.447 Pa.s(在T = 1723 K时)。进一步添加CaO(CaO / SiO_2> 1.2)会增加粘度。 CaO添加的影响在较高温度下更为明显。研究的局限性/意义:熔融氧化物体系的粘度由内部结构决定。要确切阐明由CaO含量增加引起的氧化物体系结构变化,还需要进行其他分析,例如傅立叶变换红外光谱和拉曼光谱。实际意义:最佳渣模式的选择不仅影响主要的冶金工艺,还有整个炼钢过程的技术经济指标值。粘度是影响炉渣使用性能的重要因素,因为它在冶金过程中化学反应的传质区域中起着重要作用。原创性/值:在CaO / SiO_2 = 0.78-1.44、47.20-35.98wt。%SiO_2、36.90-51.90wt。%CaO和15.90-12.12wt。%Al_20_3的条件下测量CaO-Al_2O_3-SiO_2系统的粘度。

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