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核電用奧氏體不銹鋼的動態再結晶行為

Dynamic recrystallization behavior of an austenitic stainless steel for nuclear power plants

  • 摘要: 利用Gleeble-1500D熱模擬試驗機對316LN奧氏體不銹鋼進行單道次熱壓縮試驗,分別設置變形溫度為900~1200℃、應變速率為0.001~10 s-1、真應變為0.1~0.9及試樣的初始晶粒度為122~297μm之間,以研究熱變形條件及初始晶粒度對316LN鋼動態再結晶行為的影響.對試驗數據進行處理,得到臨界應變與峰值應變以及臨界應力與峰值應力的比值分別為0.38和0.89,建立了動態再結晶動力學方程和晶粒尺寸演變方程.對建立的動態再結晶模型進行修正,將修正后的模型嵌入DEFORM-3D有限元模擬軟件中進行計算,發現修正模型的模擬值和試驗值符合較好,證明修正模型的準確性.

     

    Abstract: In order to study the effects of deformation conditions and initial grain size on the dynamic recrystallization behavior of316 LN austenitic stainless steel,single pass hot compression tests were conducted on a Gleeble-1500 D thermal-mechanical simulator with the deformation temperature of 900-1200℃,the strain rate of 0. 001-10 s-1,the true strain of 0. 1-0. 9 and the initial grain size of 122-297 μm. It is obtained that the ratio of critical strain to peak strain and the ratio of critical stress to peak stress are 0. 38 and 0. 89,respectively. A dynamic recrystallization kinetic model and a grain size evolution model were established based on experimental data. In addition,the developed models were modified for DEFORM-3D finite element simulation. It can be found that the simulated values by the modified model and experimental data agree well,indicating that the modified models have good accuracy.

     

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