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Ti-Mg復合脫氧鋼中夾雜物細化機制

Refinement mechanisms of inclusions in steel by Ti-Mg complex deoxidation

  • 摘要: 為了探討鋼中細小夾雜物的形成機制,采用掃描電鏡和能譜儀表征了鋼中夾雜物的形貌、尺寸、成分及數量,理論計算了脫氧產物的生成優勢區圖,討論了夾雜物長大的影響因素.鋼中夾雜物的組成以MgO-Al2O3-TiOx為核心,表面包裹析出MnS,鋼液中未發現單獨的Al2O3和TiOx夾雜;夾雜物的形貌為近球形,平均尺寸為1μm左右,數量在1000 mm-2以上.鎂含量較高的鋼中含有少量以MgO-Al2O3和MgO為核心的夾雜物,不利于夾雜物的球形化,鎂含量宜控制在50×10-6以下.鎂的脫氧能力強,形核臨界尺寸小、形核數量多以及鋼液中鎂、鋁和鈦復合脫氧的高熔點產物的特性有效地控制了鋼中夾雜物的擴散與碰撞長大趨勢.

     

    Abstract: To understand the refinement mechanisms of inclusions in steel,the morphology,size,composition and number of inclusions in low C-Mn steel were characterized by scanning electron microscopy and energy dispersive spectroscopy. The predominance area diagram of deoxidation products was calculated. Some factors which influence the growth of inclusions was discussed. It is found that inclusions in Ti-Mg deoxidized steel are composed of MgO-Al2O3-TiOx,then MnS encapsulated and precipitated on them,isolated Al2O3 and TiOxdo not appear in the steel. The inclusions' morphology is spherical,the average size is about 1.0 μm,and the number is more than 1000 mm-2. Few MgO-Al2O3 and MgO inclusions exist in the steel with high Mg content. Therefore,high Mg content in molten steel is harmful to the control of sphericizing,and it should be restricted to below 50 × 10-6. Magnesium has strong deoxidation ability,and the deoxidation products have the characteristics of small critical radius,large number of nucleation,and the formation of Al-Ti-Mg-O complex inclusions,which both control the supersaturation of oxygen and the growth of inclusions in the steel.

     

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