首页> 外文会议>TMS annual meeting exhibition;EPD congress >REACTION BETWEEN MnO-SiO_2 OXIDES WITH LOW FeO CONTENT AND SOLID STEEL DEOXIDIZED BY Si AND Mn DURING HEAT TREATMENT
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REACTION BETWEEN MnO-SiO_2 OXIDES WITH LOW FeO CONTENT AND SOLID STEEL DEOXIDIZED BY Si AND Mn DURING HEAT TREATMENT

机译:热处理过程中低FeO含量的MnO-SiO_2氧化物与Si和Mn对固态钢进行脱氧反应

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In order to clarify the reaction between MnO-SiO_2 oxides with low FeO content and Fe-Mn-Si alloy, two diffusion couples were produced by the new method using confocal scanning laser microscopy (CSLM). The interface of the alloy and oxide, content of Mn and Si in the alloy near the interface, size distribution and composition of the particles which precipitated in the alloy were observed and analyzed using the electron probe microanalysis (EPMA). Results show that though the FeO content in the oxides decrease to 1% which is lower than the equilibrium with the molten steel at 1873K, the diffusion of oxygen from oxide to alloy still exists during the heat treatment at 1473K and causes shorter Particle Precipitated Zone (PPZ) and Manganese Depleted Zone (MDZ) normally for the reduction of diffusion flux of oxygen.
机译:为了阐明低FeO含量的MnO-SiO_2氧化物与Fe-Mn-Si合金之间的反应,采用共聚焦扫描激光显微镜(CSLM)通过新方法制备了两个扩散对。使用电子探针显微分析(EPMA)观察和分析了合金与氧化物的界面,界面附近的Mn和Si含量,在合金中沉淀的颗粒的尺寸分布和组成。结果表明,尽管氧化物中的FeO含量降低到1%,低于1873K时与钢水的平衡状态,但在1473K的热处理过程中,氧仍从氧化物扩散到合金中,并导致较短的颗粒沉淀区( PPZ)和锰耗尽区(MDZ)通常用于减少氧气的扩散通量。

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