Effect of annealing temperature on microstructure of 20MnSi steel processed by equal channel angular pressing
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摘要: 采用C方式等徑彎曲通道變形(ECAP)法制備了平均晶粒尺寸-0.20 μm的亞微晶20MnSi鋼,研究了退火溫度對ECAP變形組織的影響.結果表明,隨退火溫度升高,ECAP變形獲得的亞微晶鐵素體變形組織在原位逐漸演變為再結晶組織,300~500℃退火1 h后,亞微晶鐵素體組織穩定,晶粒無明顯長大.退火溫度高于500℃后,鐵素體晶粒開始明顯長大,650℃退火后的鐵素體平均晶粒尺寸-8μm.經ECAP變形的珠光體組織在較低溫度退火時,滲碳體具有較強的球化能力.Abstract: 20MnSi steel with a submicrometer ferrite grain size of about 0.20μm was manufactured by four passes of equal channel angular pressing via route C at room temperature, and the effect of annealing temperature on the ECAP deformation microstructure was examined. The results show that with the annealing temperature increased, the ECAP deformed microstructure is evolved into recrystallized grains insitu. At annealing temperatures of 300-500℃ for 1 h, the submicrometer ferrite microstructure is relatively stable with negligible grain growth. At annealing temperatures above 500℃, the ferrite grain starts to grow significantly, and there is an average grain size of about 8μm after annealing at 650℃ for 1 h. The cementite in the pearlite by ECAP has a stronger ability of spheroidization at a lower annealing temperature.
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Key words:
- 20MnSi steel /
- ECAP /
- submicrometer ferrite grain /
- annealing treatment
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