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高溫純鐵熔體中外加氧化鋁納米粉的研究

Study on the process of adding Al2O3 nano-powder to molten pure iron

  • 摘要: 在工業純鐵熔體中加入納米Al2O3顆粒,熔煉后得到鑄錠試樣.用掃描電鏡(SEM)及能譜(EDS)研究了鑄錠金相試樣中夾雜物的存在狀態及成分.采用非水溶液電解法分離、收集鑄錠中的非金屬夾雜物,用SEM及EDS分析了夾雜物的形貌、大小和元素組成.結果表明,外加的納米Al2O3顆粒能夠在純鐵熔體中穩定存在,并與雜質元素所生成的夾雜物發生復合,復合夾雜物的尺寸為5~10μm.納米Al2O3顆粒一般存在于復合夾雜物的內部.未發現納米Al2O3團聚燒結成大于10μm顆粒的現象.從熱力學和顆粒運動行為方面進一步分析了納米Al2O3在純鐵熔體中的穩定性和團聚燒結成大顆粒的可能性.

     

    Abstract: An ingot specimen was obtained by the process of adding Al2O3 nano-particle to molten industrial pure iron. The existent state and chemical components of nonmetallic inclusions in the metal-phase sample were investigated by SEM and EDS. Nonmetallic inclusions were extracted from the ingot by the electrolytic method in nonaqueous solution, and SEM and EDS were used to study their characteristics, such as morphology, size, and chemical components. The results showed that additive Al2O3 nano-partlcle could be stabilized and combine with microelements, such as Mn and S to form complex inclusions, whose size is about 5-10 μm. Al2O3 nanoparticle existed usually in the interior of complex inclusions. The phenomena of reuniting and agglomeration of Al2O3 nano-particle was rare. The thermodynamic stability and probability of reuniting and agglomerating of Al2O3 nano-particle were also analyzed in molten pure iron.

     

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