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Distribution and Morphology of MnS Inclusions in Resulfurized Non-Quenched and Tempered Steel with Zr Addition

机译:Zr掺杂再硫化非调质钢中MnS夹杂物的分布和形貌

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摘要

Distribution and morphology of MnS inclusions in as-cast ingots and as-forged bars of two Zr-bearing resulfurized non-quenched and tempered (NQT) steels have been performed. In the low Zr-bearing steel (0.001 wt%), MnS inclusions, which are teardrop-shaped or rod-like in two-dimensional (2D) morphology and dendritic or skeletal in three-dimensional (3D) morphology, are mainly distributed and segregated at the grain boundaries. While in the high Zr-bearing steel (0.0066 wt%), MnS inclusions are spherical or angular in both 2D and 3D observation and the distribution is more uniform than those in low zirconium steel. The calculated results by Thermo-Calc software show that the content of oxygen is not the direct factor that influences the morphology and distribution of MnS inclusions in medium-sulfur low-oxygen NQT steels. ZrO_2 particles are ideal partcles for generation of spherical type I MnS inclusions owing to their strong nucleation capability and large amounts. However, the Zr and Al contents should be controlled cautiously to avoid generating large-sized agminated complex oxides, which are not easy to float and be removed owing to their high density. Otherwise, the ideal particles ZrO_2 would decrease sharply in number and fail in offering sufficient heterogeneous nuclei for type I MnS inclusions. Besides, high proportion of complex MnS inclusions would decrease the supersaturation when pure MnS inclusions begin to precipitate, suppressing the generation of dendritic type II MnS inclusions.
机译:对两种含Zr的再硫化非调质(NQT)钢的铸锭和铸锭中的MnS夹杂物的分布和形态进行了研究。在低Zr钢(0.001 wt%)中,主要分布有MnS夹杂物,它们在二维(2D)形态下呈滴状或棒状,而在3D(3D)形态下呈树枝状或骨架状。隔离在晶界处。而在高锆含量钢(0.0066 wt%)中,MnS夹杂物在2D和3D观察中均为球形或有角,并且分布比低锆钢更均匀。 Thermo-Calc软件的计算结果表明,氧含量不是影响中硫低氧NQT钢中MnS夹杂物形态和分布的直接因素。 ZrO_2颗粒由于其强大的成核能力和大量的数量而成为生成球形I型MnS夹杂物的理想颗粒。但是,应谨慎控制Zr和Al的含量,以免产生大尺寸的混合氧化物,由于它们的高密度,它们不易漂浮和被去除。否则,理想粒子ZrO_2的数量将急剧减少,并且无法为I型MnS夹杂物提供足够的异质核。此外,当纯MnS夹杂物开始沉淀时,高比例的复杂MnS夹杂物会降低过饱和度,从而抑制了树枝状II型MnS夹杂物的产生。

著录项

  • 来源
    《ISIJ international》 |2018年第7期|1307-1315|共9页
  • 作者单位

    State Key Laboratory of Advanced Metallurgy, University of Science and Technology Beijing, 30 Xueyuan Road, Haidian District, Beijing, 100083 P. R. China;

    State Key Laboratory of Advanced Metallurgy, University of Science and Technology Beijing, 30 Xueyuan Road, Haidian District, Beijing, 100083 P. R. China;

    Xining Special Steel Co., Ltd., 52 Chaidamu West Road, Xining Qinghai, 810005 P. R. China;

    Xining Special Steel Co., Ltd., 52 Chaidamu West Road, Xining Qinghai, 810005 P. R. China;

    Xining Special Steel Co., Ltd., 52 Chaidamu West Road, Xining Qinghai, 810005 P. R. China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    non-quenched and tempered steel; ZrO_2; MnS morphology; heterogeneous nucleation;

    机译:非调质钢ZrO_2;MnS形态异质成核;
  • 入库时间 2022-08-17 23:57:26

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