Effect of Relaxation Process and Cooling Rate on Intermediate Phase Transformation Structure Refinement
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摘要: 利用熱模擬實驗,對在非再結晶溫度變形后弛豫一段時間,再以不同冷速冷卻的低碳貝氏體鋼的相變組織進行了研究,并與同等條件不弛豫的試樣組織進行了對比.給出了弛豫和冷速對中溫轉變組織類型及組織細化程度的影響.實驗結果表明,弛豫及冷卻速度對變形奧氏體的相變組織是有影響的.低冷速下主要得到邊界及取向不清晰的粒狀貝氏體,這時弛豫時間對細化程度影響不明顯,在10℃/S以上冷速下得到的是以板條貝氏體為主的組織,與未弛豫試樣比較,其組織更細,板條形狀更清晰,弛豫試樣組織中殘余奧氏體或M/A島的形狀更細長,弛豫有利于在同等冷卻條件下得到板條組織,并且在高冷速下,弛豫試樣中M/A量較未弛豫試樣中的要少.Abstract: The intermediate transformation microstructure of low-carbon bainite steel was analyzed, which had been deformed in the non-recrystallization temperature range, relaxed for a period of time and cooled by various cooling rates. The influence of relaxation process and cooling rate on the intermediate transformation structure type and microstructure refinement was revealed. The results show that in a slowly cooled sample after relaxation the transformation structure is mainly granular bainite and the effect of relaxation refinement is not marked. But while the cooling rate is fast enough (>10 ℃/s): the main microstructure is lath-like bainite, and relaxation effect can be seen clearly. After relaxation, the lath of bainitic ferrite is more fine and sharp, the morphology of M/A constituent is film-like. Comparing with the non-relaxed sample, it is clearly seen that the relaxation of deformed austenite benefits to obtain ultra-fine lath-like bainite structure. At the same cooling rate, the amount of M/A constituent decreases in the relaxed sample.
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