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Effects of titanium on ferrite continuous cooling transformation curves of high-thickness Cr-Mo steels

机译:钛对高厚度Cr-Mo钢铁素体连续冷却转变曲线的影响

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摘要

The effect of Ti on the ferrite-phase transformation in the middle portion of high-thickness Cr-Mo steel vessels was studied. The phase diagrams and ferrite continuous cooling transformation (CCT) curves were calculated thermodynamically, and dilatometry tests were performed to determine the start and finish times of the ferrite transformation. When the Ti concentration was 0.015 mass%, Δ(F s -F f ) of ferrite CCT curve decreased owing to an increase in the concentration of Mn dissolved as a result of (Mn, Ti) oxide formation. When the Ti concentration was 0.03 mass% or greater, the ferrite CCT curves shifted considerably to the right along the time axis owing to an increase in Ti oxide formation and the precipitation of Ti4C2S2, both of which affect the concentration of Mn dissolved in the austenite matrix. As a result, a completely bainitic structure was obtained when the Ti concentration was 0.03 mass% or greater.
机译:研究了Ti对高厚度Cr-Mo钢容器中部铁素体相变的影响。热力学计算出相图和铁素体连续冷却转变(CCT)曲线,并进行膨胀试验,以确定铁素体转变的开始和结束时间。当Ti浓度为0.015质量%时,由于形成(Mn,Ti)氧化物而溶解的Mn浓度增加,因此铁素体CCT曲线的Δ(F s -F f)降低。当Ti浓度为0.03质量%以上时,由于Ti氧化物的生成增加和Ti4C2S2的析出,铁素体CCT曲线沿时间轴向右大幅偏移,这两者都影响溶解于奥氏体的Mn的浓度矩阵。结果,当Ti浓度为0.03质量%以上时,获得完全贝氏体组织。

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  • 来源
    《Metals and Materials International》 |2013年第5期|907-915|共9页
  • 作者单位

    Industrial Technology Support Division Korea Institute of Materials Science">(1);

    Department of Materials Science and Engineering Pusan National University">(2);

    Department of Materials Science and Engineering Pusan National University">(2);

    Corporate RD Institute Doosan Heavy Industries Construction">(3);

    Industrial Technology Support Division Korea Institute of Materials Science">(1);

    Department of Materials Science and Engineering Pusan National University">(2);

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