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首页> 外文期刊>Journal of Materials Science >Strain-induced precipitation kinetics of Nb(C,N) and precipitates evolution in austenite of Nb–Ti micro-alloyed steels
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Strain-induced precipitation kinetics of Nb(C,N) and precipitates evolution in austenite of Nb–Ti micro-alloyed steels

机译:Nb(C,N)的应变诱导析出动力学和Nb-Ti微合金钢奥氏体中的析出演化

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摘要

In this article, the precipitation–temperature–time (PTT) curves were obtained by plotting 1/A r-time curves (A r represents the area under the flow curves, and some details were clarified in the section “1/A r method”) using two-stage interrupted compression testing. Based on the measured PTT curves, the L_J model has been applied to calculate the complete PTT curves by adjusting the modification factor, f, to be 0.022, from which it can be seen that they are both typical C-shaped with the nose temperature ranging from 900 to 925 °C. By using additivity rule, the continuous-cooling-precipitation (CCP) curves were established. And the critical cooling rates for precipitation start were also determined for different cooling start temperatures, and the effects of cooling rates and cooling start temperatures on CCP curves were systematically clarified. The evolution of precipitates was found to be in good agreement with PTT curves. Numerous fine and round precipitates were formed during holding after first compression deformation, which could have hindered static recrystallization kinetics and accounted for the plateaus on 1/A r-time curves. In addition, The cubic precipitates are mainly undissoloved TiN-rich (Ti,Nb) (C,N) carbonitrides. And based on the CCP and continuous-cooling-transformation curves of tested steel, the effect of cooling paths on precipitation and transformation were also discussed in details.
机译:在本文中,通过绘制1 / A r-sub-time曲线获得了降水-温度-时间(PTT)曲线(A r 表示流量曲线下的面积,并在其中阐明了一些细节)。 “ 1 / A r 方法”部分)使用两阶段中断压缩测试。根据测得的PTT曲线,通过将修正因子f调整为0.022,L_J模型已用于计算完整的PTT曲线,从中可以看出它们都是典型的C形,并且鼻温在从900到925°C。利用加性法则建立了连续冷却沉淀曲线。并确定了不同冷却起始温度下沉淀开始的临界冷却速率,系统地阐明了冷却速率和冷却起始温度对CCP曲线的影响。发现沉淀物的演变与PTT曲线非常吻合。在第一次压缩变形后的保持过程中,形成了许多细小且圆形的沉淀物,这可能会阻碍静态再结晶动力学,并导致1 / A r-时间曲线上的平稳期。此外,立方沉淀物主要是未溶解的富TiN(Ti,Nb)(C,N)碳氮化物。并根据CCP和被测钢的连续冷却转变曲线,详细讨论了冷却路径对析出和转变的影响。

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  • 来源
    《Journal of Materials Science》 |2012年第11期|p.4640-4648|共9页
  • 作者单位

    The State Key Laboratory of Rolling and Automation, Northeastern University, P.O. Box. 105, Shenyang, 110819, People’s Republic of China;

    The State Key Laboratory of Rolling and Automation, Northeastern University, P.O. Box. 105, Shenyang, 110819, People’s Republic of China;

    The State Key Laboratory of Rolling and Automation, Northeastern University, P.O. Box. 105, Shenyang, 110819, People’s Republic of China;

    The State Key Laboratory of Rolling and Automation, Northeastern University, P.O. Box. 105, Shenyang, 110819, People’s Republic of China;

    The State Key Laboratory of Rolling and Automation, Northeastern University, P.O. Box. 105, Shenyang, 110819, People’s Republic of China;

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