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共析鋼溫變形過程的組織球化與超細化

Spheroidizing and ultra-refining of structure in eutectoid steel during warm deformation

  • 摘要: 利用熱模擬壓縮變形、SEM和熱磁法實驗,研究了共析鋼在600~700℃變形過程的組織演變規律,探討了變形及隨后保溫過程對珠光體球化、組織超細化和滲碳體溶解、再析出的影響.實驗表明:共析鋼溫變形過程中發生珠光體片層溶斷,滲碳體逐漸球化,以及伴隨鐵素體動態回復再結晶的同時細小彌散滲碳體顆粒在基體析出的過程.提高溫度有利于上述復合過程的進行.形變組織經過保溫后,亞微米級別的等軸鐵素體晶粒和滲碳體顆粒彌散分布的復相組織的均勻性程度有所提高.溫變形過程中滲碳體溶解和在鐵素體內再析出的事實得到證實.

     

    Abstract: Microstructure evolution in eutectoid steel during warm deformation in the temperature range from 600 to 700℃ was investigated by simulating hot compression test, SEM and thermomagnetic measurement. The effects of deformation and subsequent annealing on the spheroidizing of pearlite, refining of microstructure and dissolution of cementite were studied. The experimental resuits indicated that during warm deformation of eutectoid steel, pearlite lamellas fractured, cementite gradually spheroidized, and dynamic recovery and recrystallization of ferrite took place with fine dispersive cementite particles being precipitated. An increase in deformation temperature enhanced the above processes. Following annealing, the microstructure consisting of submicron-scale equiaxed ferritic grains and dispersive cementite particles became more homogeneous. Partial dissolution and re-precipitation of cementite during warm deformation were confirmed.

     

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