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9Cr低活化馬氏體鋼高溫變形行為

Hot deformation behavior of 9Cr reduced activation martensitic steel

  • 摘要: 采用Gleeble-1500D熱模擬試驗機研究了9Cr低活化馬氏體鋼在950~1200℃、應變速率為10-2~10s-1變形條件下的熱壓縮變形行為,并用金相顯微鏡觀察了相應顯微組織的變化.回歸分析得出在0.15~0.8真應變量范圍內變形激活能和材料常數隨真應變量變化的關系式,并得出雙曲正弦本構方程;利用數學方法直接從真應力-真應變曲線獲得動態再結晶的峰值應力、臨界應力、峰值應變和臨界應變;回歸得出了峰值應力、臨界應力、峰值應變、臨界應變和動態再結晶晶粒大小與Zener-Hollomon參數的關系式.

     

    Abstract: The hot deformation behavior of 9Cr reduced activation martensitic steel was investigated by compression testing on a Gleeble-1500D simulator in the temperature range of 950 to 1200℃ and the strain rate range of 10-2 to 10 s-1, and the microstructural evolution was analyzed by metallography. Based on measured data in the strain range of 0.15 to 0.8, material parameters in the Arrhenius-type hyperbolic-sine equation were solved by using regression analysis methods and then used to fit the deformation. A constitutive equation which relates the flow stress to temperature, strain rate and strain was established by mathematical methods. The values of peak stress, critical stress, peak strain, critical strain and grain size for dynamic recrystallization (DRX) were determined from the true strain-true stress curves and their equations related to the Zener-Hollomon parameter were obtained.

     

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