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  • 廖為鑫, 解子章, 吳成義, 相讓. 對水霧化Si-Mn鋼粉采用樹脂涂層進行脫氧的研究[J]. 工程科學學報, 1984, 6(2): 112-117. DOI: 10.13374/j.issn1001-053x.1984.02.010
    引用本文: 廖為鑫, 解子章, 吳成義, 相讓. 對水霧化Si-Mn鋼粉采用樹脂涂層進行脫氧的研究[J]. 工程科學學報, 1984, 6(2): 112-117. DOI: 10.13374/j.issn1001-053x.1984.02.010
    Liao Weixin, Jie Zizhang, Wu Chengyi, Xiang Rang. Reduced oxygen on the surface of water-atomieed Sn-Mn steel powder with resin[J]. Chinese Journal of Engineering, 1984, 6(2): 112-117. DOI: 10.13374/j.issn1001-053x.1984.02.010
    Citation: Liao Weixin, Jie Zizhang, Wu Chengyi, Xiang Rang. Reduced oxygen on the surface of water-atomieed Sn-Mn steel powder with resin[J]. Chinese Journal of Engineering, 1984, 6(2): 112-117. DOI: 10.13374/j.issn1001-053x.1984.02.010

    對水霧化Si-Mn鋼粉采用樹脂涂層進行脫氧的研究

    Reduced oxygen on the surface of water-atomieed Sn-Mn steel powder with resin

    • 摘要: 本文用熱力學原理分析了Si-Mn氧化物還原的熱力學條件,并根據其熱力學分析結果,對水霧化Si-Mn鋼粉采用熱塑性樹脂涂層,在高純氮氣氛中進行脫氧的新工藝研究。使水霧文Si-Mn鋼粉在1280℃,1330℃溫度下保溫120分鐘后,其含氧量由3060P.P.M左右降至300P.P.M以下。同時測定了在還原脫氧過程中,不同的樹脂用量與還原后鋼粉中含氧量之間的關系。解決了含Si Mn等難還原元素水霧化鋼粉非真空脫氧問題。

       

      Abstract: We applied the thermodynamic principle to analyze the thermodynamic condition for deoxidizing the oxide of Si-Mn. According to our result, we designed a new technigue, the surface of water-atomized Si-Mn steel powder deoxidized in pure N2 with thermoset resin. With the steel powder maintained at 1280℃ or 1330℃ about 120 minutes, the oxygen content can be decreased from about 3060 to 300P.P.M. In the meantime, we determined the relationship between the amount of the oxygen in steel powder and that of the resin in this reducing process. In this way,we solved the deoxidizing problem of water-atomized steel powder that contains Si, Mn and other difficult reduction elements undernon-Vacuum condition.

       

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