Effect of deformation on the temper process of lath martensite
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摘要: 對Q235級低碳鋼板條馬氏體在550℃多道次單向壓縮變形后退火和室溫大塑性變形軋制后在此溫度退火的顯微組織演變規律進行了對比研究,結合未變形板條馬氏體在此溫度的回火組織演變,討論了變形對馬氏體分解過程、鐵素體再結晶晶粒尺寸和析出碳化物形貌的影響.實驗結果表明,變形顯著影響馬氏體分解過程,促進滲碳體的析出和鐵素體回復及再結晶.熱變形組織鐵素體再結晶晶粒尺寸在0.5μm左右;滲碳體形貌從細棒狀向球狀轉變,隨變形量增大滲碳體尺寸增大,繼續保溫60min導致鐵素體晶粒長大到1μm左右,晶粒內部的滲碳體消失,原先在鐵素體晶界析出的滲碳體球化、粗化.冷軋試樣在550℃退火保溫時間在30min內得到0.3~0.4μm超細晶粒和尺度小于150nm的彌散滲碳體顆粒組織;隨退火保溫時間延長到60min,鐵素體再結晶晶粒長大到1.9μm,滲碳體顆粒尺寸約160nm.Abstract: The microstructure evolution during multi-pass warm deformation at 550℃ and subsequent annealing process of lath martensite was investigated and compared with that of SPD (severe plastic deformation) cold-rolled lath martensite during annealing at 550℃. In comparison with tempered martensite at the same temperature, the effects of warm and cold deformation on ferrite grain size and cementite precipitation were discussed. The results showed that both warm and cold deformation significantly promoted the precipitation of cementite as well as recovery and recrystallization of ferrite. The grain size of recrystallized ferrite after warm deformation was 0.5μm, meanwhile rod-type cementite particles changed to spherical-type, the size of cementite grew along with the increase of deformation reduction. Then ferrite grains grew up to 1μm when subsequently annealed at 550℃ for 60 min, and Ostwald ripening occurred during annealing process. In cold-rolled specimens which annealed at 550℃for 30 min, 0.3-0.4μm ferrite grains and dispersed cementite particles with the size below 150 nm formed. The mean sizes of ferrite grains and cementite particles grew up to 1.9 μm and 160 nm during subsequent annealing.
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Key words:
- martensite /
- deformation /
- tempering treatment /
- ferrite /
- cementite
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