<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>

電渣重熔對42CrMo鋼中夾雜物的影響及CCT曲線研究

Electroslag remelting effect on inclusions in 42CrMo steel and CCT curve study

  • 摘要: 采用BX51M型金相顯微鏡和和Image Pro-Plus軟件研究電渣重熔后優化成分的42CrMo鋼中非金屬夾雜物情況,并在Gleeble3000熱模擬機上測定其連續冷卻相轉變(CCT)曲線.研究結果表明:電渣重熔后明顯減少鋼中夾雜物的數目,改善鋼中夾雜物的尺寸,夾雜物去除率達到71.90%;同時根據熱膨脹曲線和金相組織繪制出42CrMo鋼的CCT曲線,冷卻速度較低時組織為鐵素體、珠光體和貝氏體,冷卻速度較大時組織為馬氏體和少量貝氏體.

     

    Abstract: The effect of electroslag remelting(ESR) on nonmetallic inclusions in an optimal component 42 CrMo steel was studied by BX51 M optical microscopy and Image Pro-Plus software,and the continuous cooling transformation(CCT) curve was measured on a Gleeble3000 thermal simulation machine. These results show that ESR can reduce the number and size of inclusions in steel samples and the inclusions removal ratio reaches 71.90%. The CCT curve of 42 CrMo steel was plotted according to the thermal expansion curve and microstructure. When the cooling rate is lower,the microstructure is ferrite,pearlite and bainite; but when the cooling rate is higher,there are martensite and a small amount of bainite.

     

/

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