Tian-yin Zhan, Jun Tian, Xiang-long Li, Li-juan Su, Dong Hou, Tian-peng Qu, De-yong Wang
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Compared with Ca-treated steel, there are more MnS–oxide inclusions in Mg–Ca-treated steel. Controlling the content of Ca and Mg in the oxide core of MnS–oxide inclusion above 10 wt.% and the area ratio below 5 would contribute to the formation of spindle-shaped inclusions after rolling. The mismatch between MnS and oxides decreases with the increase in MgO content in the oxides, which is beneficial to nucleation and precipitation of MnS with this type of oxides as the core. Under the same deformation conditions, the size of sulfide does not affect its aspect ratio. Under the experimental conditions, the inclusion containing a certain amount of MgO can enhance its sulfur capacity, facilitating the formation of composite sulfides. The transverse impact energy of Ca-treated steel is 25.785 J, and that of Mg–Ca-treated steel is 32.119 J. Compared with the traditional Ca-treatment, Mg–Ca treatment can increase the number of spindle-shaped sulfides in the steel, thereby improving the transverse impact toughness of the steel and reducing the anisotropy of the mechanical properties of the material.</p>","PeriodicalId":16151,"journal":{"name":"Journal of Iron and Steel Research International","volume":"60 1","pages":""},"PeriodicalIF":2.5000,"publicationDate":"2024-05-13","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Effects of Mg–Ca treatment and Ca treatment on impact toughness and morphology of sulfides in 45MnVS non-quenched and tempered steel\",\"authors\":\"Tian-yin Zhan, Jun Tian, Xiang-long Li, Li-juan Su, Dong Hou, Tian-peng Qu, De-yong Wang\",\"doi\":\"10.1007/s42243-024-01215-4\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>An industrial experiment was conducted at a certain steel plant in China to compare and analyze the effects of Ca treatment and Mg–Ca treatment on inclusions in 45MnVS non-quenched and tempered steel. 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引用次数: 0
摘要
在中国某钢厂进行了一项工业试验,对比分析了Ca处理和Mg-Ca处理对45MnVS非调质钢中夹杂物的影响。通过扫描电镜-能量色散扫描分析夹杂物的形态和成分,以及 Aspex 定量分析夹杂物的数量、种类和尺寸,深入研究了 MnS-氧化物(具有氧化物核心的 MnS 夹杂物)的形成机理。还分析了硫化物形态对钢冲击性能的影响。结果表明,钙处理钢中纺锤形硫化物的数量百分比为 19.99%,而镁-钙处理钢中纺锤形硫化物的数量百分比为 35.38%。与 Ca 处理钢相比,Mg-Ca 处理钢中有更多的 MnS-氧化物夹杂物。控制 MnS-oxide 包体氧化物核心中 Ca 和 Mg 的含量高于 10 重量%,面积比低于 5,有助于轧制后形成纺锤形包体。随着氧化物中 MgO 含量的增加,MnS 与氧化物之间的不匹配度降低,这有利于以这类氧化物为核心的 MnS 的成核和沉淀。在相同的变形条件下,硫化物的大小并不影响其长宽比。在实验条件下,含有一定量氧化镁的包合物可以提高其硫容量,促进复合硫化物的形成。与传统的 Ca 处理相比,Mg-Ca 处理可以增加钢中纺锤形硫化物的数量,从而提高钢的横向冲击韧性,降低材料力学性能的各向异性。
Effects of Mg–Ca treatment and Ca treatment on impact toughness and morphology of sulfides in 45MnVS non-quenched and tempered steel
An industrial experiment was conducted at a certain steel plant in China to compare and analyze the effects of Ca treatment and Mg–Ca treatment on inclusions in 45MnVS non-quenched and tempered steel. Through scanning electron microscopy-energy dispersive scanning analysis of the morphology and composition of inclusions, as well as Aspex quantitative analysis of their quantity, type and size, the formation mechanism of MnS–oxide (MnS inclusions with oxide cores) was intensively studied. The influence of sulfide morphology on the impact properties of steel was also analyzed. The results show that the quantity percentage of spindle-shaped sulfides in Ca-treated steel is 19.99%, and that in Mg–Ca-treated steel is 35.38%. Compared with Ca-treated steel, there are more MnS–oxide inclusions in Mg–Ca-treated steel. Controlling the content of Ca and Mg in the oxide core of MnS–oxide inclusion above 10 wt.% and the area ratio below 5 would contribute to the formation of spindle-shaped inclusions after rolling. The mismatch between MnS and oxides decreases with the increase in MgO content in the oxides, which is beneficial to nucleation and precipitation of MnS with this type of oxides as the core. Under the same deformation conditions, the size of sulfide does not affect its aspect ratio. Under the experimental conditions, the inclusion containing a certain amount of MgO can enhance its sulfur capacity, facilitating the formation of composite sulfides. The transverse impact energy of Ca-treated steel is 25.785 J, and that of Mg–Ca-treated steel is 32.119 J. Compared with the traditional Ca-treatment, Mg–Ca treatment can increase the number of spindle-shaped sulfides in the steel, thereby improving the transverse impact toughness of the steel and reducing the anisotropy of the mechanical properties of the material.
期刊介绍:
Publishes critically reviewed original research of archival significance
Covers hydrometallurgy, pyrometallurgy, electrometallurgy, transport phenomena, process control, physical chemistry, solidification, mechanical working, solid state reactions, materials processing, and more
Includes welding & joining, surface treatment, mathematical modeling, corrosion, wear and abrasion
Journal of Iron and Steel Research International publishes original papers and occasional invited reviews on aspects of research and technology in the process metallurgy and metallic materials. Coverage emphasizes the relationships among the processing, structure and properties of metals, including advanced steel materials, superalloy, intermetallics, metallic functional materials, powder metallurgy, structural titanium alloy, composite steel materials, high entropy alloy, amorphous alloys, metallic nanomaterials, etc..