<span id="fpn9h"><noframes id="fpn9h"><span id="fpn9h"></span>
<span id="fpn9h"><noframes id="fpn9h">
<th id="fpn9h"></th>
<strike id="fpn9h"><noframes id="fpn9h"><strike id="fpn9h"></strike>
<th id="fpn9h"><noframes id="fpn9h">
<span id="fpn9h"><video id="fpn9h"></video></span>
<ruby id="fpn9h"></ruby>
<strike id="fpn9h"><noframes id="fpn9h"><span id="fpn9h"></span>

硬線鋼Al2O3-SiO2-MgO-CaO-MnO系夾雜物低熔點區域控制

Low melting point zone control of the Al2O3-SiO2-MgO-CaO-MnO system for hard wire steel

  • 摘要: 對某廠生產的高碳硬線盤條中的夾雜物成分進行了統計分析,并通過熱力學計算軟件FactSage計算分析了Al-Si-Mn復合脫氧條件下高碳硬線盤條中Al2O3-SiO2-MgO-CaO-MnO五元系夾雜物低熔點區域的控制范圍.在五元系低熔點區域內Al2O3的質量分數可達56%,CaO的質量分數為20%~30%.

     

    Abstract: A statistical analysis on the compositions of inclusions in high carbon wire rod produced by one steel company was conducted. And the compositions of low melting point inclusions of Al2O3-SiO2-MgO-CaO-MnO system in a high carbon wire rod steel with Al-Si-Mn deoxidization were calculated and analyzed by the thermodynamic software FactSage. In the low melting point zone of the Al2O3-SiO2-MgO-CaO-MnO system for a high carbon wire rod steel, the Al2O3 content should reach 56%, and CaO 20%~30%.

     

/

返回文章
返回
<span id="fpn9h"><noframes id="fpn9h"><span id="fpn9h"></span>
<span id="fpn9h"><noframes id="fpn9h">
<th id="fpn9h"></th>
<strike id="fpn9h"><noframes id="fpn9h"><strike id="fpn9h"></strike>
<th id="fpn9h"><noframes id="fpn9h">
<span id="fpn9h"><video id="fpn9h"></video></span>
<ruby id="fpn9h"></ruby>
<strike id="fpn9h"><noframes id="fpn9h"><span id="fpn9h"></span>
www.77susu.com