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X70管線鋼熱變形奧氏體的靜態再結晶行為

Static-recrystallization behavior of hot deformation austenite in X70 pipeline steel

  • 摘要: 通過雙道次壓縮實驗,在Gleeble1500熱模擬試驗機上研究了X70管線鋼在不同變形工藝下奧氏體的軟化行為,分析了不同變形溫度、間隔時間、應變速率、變形量及初始奧氏體晶粒尺寸等參數對靜態再結晶行為的影響規律,采用應力補償法計算了不同變形條件下的靜態再結晶百分率.根據實驗數據,計算出X70管線鋼靜態再結晶激活能為435.3kJ·mol-1,建立了其靜態再結晶動力學模型.

     

    Abstract: The softening behavior of austenite in X70 pipeline steel was investigated on a Gleeble 1500 thermo-mechanical simulator at different deformation parameters by double-pass hot compression testing. The influence of the parameters such as deformation temperature, interval time between passes, strain rate, degree of reduction, and initial austenite grain size on the mechanism of static recrystallization was analyzed. The softening percentage of static recrystallization under different conditions was defined by the 0.2% stress offset method. On the base of experimental data, the value of austenitic static recrystallization activation energy of X70 pipeline steel is 435.3 kJ·mol-1, and a static recrystallization kinetics model to predict the evolution of softening was developed.

     

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