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低碳鋼中鐵素體動態再結晶的粒子激發形核

Particle stimulated nucleation of dynamic recrystallization of ferrite in a low carbon steel

  • 摘要: 利用淬、回火工藝得到具有彌散分布的滲碳體粒子+鐵素體雙相組織的低碳鋼,采用Gleeble-1500型模擬機進行熱壓縮變形實驗,研究了在700℃、0.01 s-1條件下變形過程中滲碳體粒子對低碳鋼鐵素體動態再結晶過程的影響.結果表明:在700℃、0.01 s-1條件下變形時,存在以粒子激發形核機制為主的鐵素體動態再結晶過程,在形變初期粒子激發形核主要在大尺寸滲碳體粒子(〉1μm)附近發生,大應變量下應變累積促進粒子激發形核在小尺寸滲碳體粒子(0.5~1μm)附近發生.

     

    Abstract: The microstructure consisting of dispersed cementite particles and ferrite grains was obtained by quenching and tempering in low carbon steel. The effect of cementite particles on the dynamic recrystallization of ferrite in this low carbon steel was investigated by hot compression tests at 700℃ and 0.01 s-1 on a Gleeble 1500 test machine. The results indicated that during hot deformation at 700℃ and 0.01 s-1, the dynamic recrystallization of ferrite takes place mainly by particle stimulated nucleation. At the beginning stage, particle stimulated nucleation occurs firstly near coarser particles (larger than 1 μm). At larger strain, particle stimulated nucleation also occurs near relatively small particles (between 0.5 and 1μm) due to accumulative strain.

     

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