精炼渣成分对其熔炼性能和脱硫性能的影响

IF 1.6 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
Shisen Li, Lingzhong Kong, Zhaolong Xu
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引用次数: 0

摘要

摘要为探讨低氟精炼渣的可行性,采用当量重量替代法,采用Al 2o3、sio2、b2o3、Li 2o等氧化物替代精炼渣中的ca2,测定了渣的熔融温度和脱硫能力。结果表明:矿渣(caf2 <4质量%和al2o3 >当caf2被al2o3取代时,其质量小于1,706 K。这种炉渣能使钢中的[S]降低到0.0060质量%以下。以sio2取代caf2时,熔点升高,脱硫速率降低。b2o3的助熔剂作用强于caf2,用b2o3代替caf2时,熔点降至1561 K。Li 2o不仅可以降低炉渣的熔化温度,还可以提高脱硫率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of refining slag compositions on its melting property and desulphurization
Abstract To investigate the feasibility of the refining slag with low fluoride, some oxides such as Al 2 O 3 , SiO 2 , B 2 O 3 , and Li 2 O were used to replace CaF 2 in refining slag with the equivalent weight replacement method, and then the melting temperature and desulphurization capacity of slag were determined. The results show that the melting temperature of slag (CaF 2 < 4 mass% and Al 2 O 3 > 28 mass%) is less than 1,706 K, when CaF 2 is substituted by Al 2 O 3 . This slag is able to decrease [S] in steel to less than 0.0060 mass%. In the case of substitution of CaF 2 by SiO 2 , the melting temperature increases, while the desulphurization rate decreases. The fluxing action of B 2 O 3 is stronger than that of CaF 2 , and the melting temperature decreases to 1,561 K when CaF 2 is substituted by B 2 O 3 . Li 2 O can not only lower the melting temperature of slag but also improve the desulphurization rate.
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来源期刊
High Temperature Materials and Processes
High Temperature Materials and Processes 工程技术-材料科学:综合
CiteScore
2.50
自引率
0.00%
发文量
42
审稿时长
3.9 months
期刊介绍: High Temperature Materials and Processes offers an international publication forum for new ideas, insights and results related to high-temperature materials and processes in science and technology. The journal publishes original research papers and short communications addressing topics at the forefront of high-temperature materials research including processing of various materials at high temperatures. Occasionally, reviews of a specific topic are included. The journal also publishes special issues featuring ongoing research programs as well as symposia of high-temperature materials and processes, and other related research activities. Emphasis is placed on the multi-disciplinary nature of high-temperature materials and processes for various materials in a variety of states. Such a nature of the journal will help readers who wish to become acquainted with related subjects by obtaining information of various aspects of high-temperature materials research. The increasing spread of information on these subjects will also help to shed light on relevant topics of high-temperature materials and processes outside of readers’ own core specialties.
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